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Published in: Respiratory Research 1/2009

Open Access 01-12-2009 | Review

Role of ADAM and ADAMTS metalloproteinases in airway diseases

Authors: Genevieve Paulissen, Natacha Rocks, Maud M Gueders, Celine Crahay, Florence Quesada-Calvo, Sandrine Bekaert, Jonathan Hacha, Mehdi El Hour, Jean-Michel Foidart, Agnes Noel, Didier D Cataldo

Published in: Respiratory Research | Issue 1/2009

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Abstract

Lungs are exposed to the outside environment and therefore to toxic and infectious agents or allergens. This may lead to permanent activation of innate immune response elements. A Disintegrin And Metalloproteinases (ADAMs) and ADAMs with Thrombospondin motifs (ADAMTS) are proteinases closely related to Matrix Metalloproteinases (MMPs). These multifaceted molecules bear metalloproteinase and disintegrin domains endowing them with features of both proteinases and adhesion molecules. Proteinases of the ADAM family are associated to various physiological and pathological processes and display a wide spectrum of biological effects encompassing cell fusion, cell adhesion, "shedding process", cleavage of various substrates from the extracellular matrix, growth factors or cytokines... This review will focus on the putative roles of ADAM/ADAMTS proteinases in airway diseases such as asthma and COPD.
Literature
1.
go back to reference Bousquet J, Chanez P, Lacoste JY, White R, Vic P, Godard P, Michel FB: Asthma: a disease remodeling the airways. Allergy 1992,47(1):3–11.CrossRefPubMed Bousquet J, Chanez P, Lacoste JY, White R, Vic P, Godard P, Michel FB: Asthma: a disease remodeling the airways. Allergy 1992,47(1):3–11.CrossRefPubMed
2.
go back to reference Cataldo D, Louis R, Godon A, Munaut C, Noel A, Foidart JM, Bartsch P: [Bronchial morphologic modification in asthma]. Rev Med Liege 2000,55(7):715–720.PubMed Cataldo D, Louis R, Godon A, Munaut C, Noel A, Foidart JM, Bartsch P: [Bronchial morphologic modification in asthma]. Rev Med Liege 2000,55(7):715–720.PubMed
3.
go back to reference Celli BR, MacNee W: Standards for the diagnosis and treatment of patients with COPD: a summary of the ATS/ERS position paper. Eur Respir J 2004,23(6):932–946.CrossRefPubMed Celli BR, MacNee W: Standards for the diagnosis and treatment of patients with COPD: a summary of the ATS/ERS position paper. Eur Respir J 2004,23(6):932–946.CrossRefPubMed
4.
go back to reference Jeffery PK: Remodeling in asthma and chronic obstructive lung disease. Am J Respir Crit Care Med 2001,164(10 Pt 2):S28–38.CrossRefPubMed Jeffery PK: Remodeling in asthma and chronic obstructive lung disease. Am J Respir Crit Care Med 2001,164(10 Pt 2):S28–38.CrossRefPubMed
5.
go back to reference Pauwels RA, Rabe KF: Burden and clinical features of chronic obstructive pulmonary disease (COPD). Lancet 2004,364(9434):613–620.CrossRefPubMed Pauwels RA, Rabe KF: Burden and clinical features of chronic obstructive pulmonary disease (COPD). Lancet 2004,364(9434):613–620.CrossRefPubMed
6.
go back to reference Lagente V, Boichot E: Role of matrix metalloproteinases in the inflammatory process of respiratory diseases. J Mol Cell Cardiol 2009, in press. Lagente V, Boichot E: Role of matrix metalloproteinases in the inflammatory process of respiratory diseases. J Mol Cell Cardiol 2009, in press.
7.
8.
go back to reference Gueders MM, Foidart JM, Noel A, Cataldo DD: Matrix metalloproteinases (MMPs) and tissue inhibitors of MMPs in the respiratory tract: potential implications in asthma and other lung diseases. Eur J Pharmacol 2006,533(1–3):133–144.CrossRefPubMed Gueders MM, Foidart JM, Noel A, Cataldo DD: Matrix metalloproteinases (MMPs) and tissue inhibitors of MMPs in the respiratory tract: potential implications in asthma and other lung diseases. Eur J Pharmacol 2006,533(1–3):133–144.CrossRefPubMed
9.
11.
go back to reference Seals DF, Courtneidge SA: The ADAMs family of metalloproteases: multidomain proteins with multiple functions. Genes Dev 2003,17(1):7–30.CrossRefPubMed Seals DF, Courtneidge SA: The ADAMs family of metalloproteases: multidomain proteins with multiple functions. Genes Dev 2003,17(1):7–30.CrossRefPubMed
12.
go back to reference Killar L, White J, Black R, Peschon J: Adamalysins. A family of metzincins including TNF-alpha converting enzyme (TACE). Ann N Y Acad Sci 1999, 878:442–452.CrossRefPubMed Killar L, White J, Black R, Peschon J: Adamalysins. A family of metzincins including TNF-alpha converting enzyme (TACE). Ann N Y Acad Sci 1999, 878:442–452.CrossRefPubMed
13.
14.
go back to reference Rocks N, Paulissen G, El Hour M, Quesada F, Crahay C, Gueders M, Foidart JM, Noel A, Cataldo D: Emerging roles of ADAM and ADAMTS metalloproteinases in cancer. Biochimie 2008,90(2):369–379.CrossRefPubMed Rocks N, Paulissen G, El Hour M, Quesada F, Crahay C, Gueders M, Foidart JM, Noel A, Cataldo D: Emerging roles of ADAM and ADAMTS metalloproteinases in cancer. Biochimie 2008,90(2):369–379.CrossRefPubMed
15.
go back to reference Murphy G: The ADAMs: signalling scissors in the tumour microenvironment. Nat Rev Cancer 2008,8(12):929–941.CrossRefPubMed Murphy G: The ADAMs: signalling scissors in the tumour microenvironment. Nat Rev Cancer 2008,8(12):929–941.CrossRefPubMed
16.
go back to reference Black RA, Rauch CT, Kozlosky CJ, Peschon JJ, Slack JL, Wolfson MF, Castner BJ, Stocking KL, Reddy P, Srinivasan S, Nelson N, Boiani N, Schooley KA, Gerhart M, Davis R, Fitzner JN, Johnson RS, Paxton RJ, March CJ, Cerretti DP: A metalloproteinase disintegrin that releases tumour-necrosis factor-alpha from cells. Nature 1997,385(6618):729–733.CrossRefPubMed Black RA, Rauch CT, Kozlosky CJ, Peschon JJ, Slack JL, Wolfson MF, Castner BJ, Stocking KL, Reddy P, Srinivasan S, Nelson N, Boiani N, Schooley KA, Gerhart M, Davis R, Fitzner JN, Johnson RS, Paxton RJ, March CJ, Cerretti DP: A metalloproteinase disintegrin that releases tumour-necrosis factor-alpha from cells. Nature 1997,385(6618):729–733.CrossRefPubMed
17.
go back to reference Rocks N, Estrella C, Paulissen G, Quesada-Calvo F, Gilles C, Gueders MM, Crahay C, Foidart JM, Gosset P, Noel A, Cataldo DD: The metalloproteinase ADAM-12 regulates bronchial epithelial cell proliferation and apoptosis. Cell Prolif 2008,41(6):988–1001.CrossRefPubMed Rocks N, Estrella C, Paulissen G, Quesada-Calvo F, Gilles C, Gueders MM, Crahay C, Foidart JM, Gosset P, Noel A, Cataldo DD: The metalloproteinase ADAM-12 regulates bronchial epithelial cell proliferation and apoptosis. Cell Prolif 2008,41(6):988–1001.CrossRefPubMed
18.
go back to reference Weskamp G, Ford JW, Sturgill J, Martin S, Docherty AJ, Swendeman S, Broadway N, Hartmann D, Saftig P, Umland S, Sehara-Fujisawa A, Black RA, Ludwig A, Becherer JD, Conrad DH, Blobel CP: ADAM10 is a principal 'sheddase' of the low-affinity immunoglobulin E receptor CD23. Nat Immunol 2006,7(12):1293–1298.CrossRefPubMed Weskamp G, Ford JW, Sturgill J, Martin S, Docherty AJ, Swendeman S, Broadway N, Hartmann D, Saftig P, Umland S, Sehara-Fujisawa A, Black RA, Ludwig A, Becherer JD, Conrad DH, Blobel CP: ADAM10 is a principal 'sheddase' of the low-affinity immunoglobulin E receptor CD23. Nat Immunol 2006,7(12):1293–1298.CrossRefPubMed
19.
go back to reference Lemieux GA, Blumenkron F, Yeung N, Zhou P, Williams J, Grammer AC, Petrovich R, Lipsky PE, Moss ML, Werb Z: The low affinity IgE receptor (CD23) is cleaved by the metalloproteinase ADAM10. J Biol Chem 2007,282(20):14836–14844.CrossRefPubMedPubMedCentral Lemieux GA, Blumenkron F, Yeung N, Zhou P, Williams J, Grammer AC, Petrovich R, Lipsky PE, Moss ML, Werb Z: The low affinity IgE receptor (CD23) is cleaved by the metalloproteinase ADAM10. J Biol Chem 2007,282(20):14836–14844.CrossRefPubMedPubMedCentral
20.
go back to reference Boldt HB, Overgaard MT, Laursen LS, Weyer K, Sottrup-Jensen L, Oxvig C: Mutational analysis of the proteolytic domain of pregnancy-associated plasma protein-A (PAPP-A): classification as a metzincin. Biochem J 2001,358(Pt 2):359–367.CrossRefPubMedPubMedCentral Boldt HB, Overgaard MT, Laursen LS, Weyer K, Sottrup-Jensen L, Oxvig C: Mutational analysis of the proteolytic domain of pregnancy-associated plasma protein-A (PAPP-A): classification as a metzincin. Biochem J 2001,358(Pt 2):359–367.CrossRefPubMedPubMedCentral
21.
go back to reference Cawston TE, Wilson AJ: Understanding the role of tissue degrading enzymes and their inhibitors in development and disease. Best Pract Res Clin Rheumatol 2006,20(5):983–1002.CrossRefPubMed Cawston TE, Wilson AJ: Understanding the role of tissue degrading enzymes and their inhibitors in development and disease. Best Pract Res Clin Rheumatol 2006,20(5):983–1002.CrossRefPubMed
23.
go back to reference Stocker W, Grams F, Baumann U, Reinemer P, Gomis-Ruth FX, McKay DB, Bode W: The metzincins--topological and sequential relations between the astacins, adamalysins, serralysins, and matrixins (collagenases) define a superfamily of zinc-peptidases. Protein Sci 1995,4(5):823–840.CrossRefPubMedPubMedCentral Stocker W, Grams F, Baumann U, Reinemer P, Gomis-Ruth FX, McKay DB, Bode W: The metzincins--topological and sequential relations between the astacins, adamalysins, serralysins, and matrixins (collagenases) define a superfamily of zinc-peptidases. Protein Sci 1995,4(5):823–840.CrossRefPubMedPubMedCentral
24.
go back to reference Endres K, Anders A, Kojro E, Gilbert S, Fahrenholz F, Postina R: Tumor necrosis factor-alpha converting enzyme is processed by proprotein-convertases to its mature form which is degraded upon phorbol ester stimulation. Eur J Biochem 2003,270(11):2386–2393.CrossRefPubMed Endres K, Anders A, Kojro E, Gilbert S, Fahrenholz F, Postina R: Tumor necrosis factor-alpha converting enzyme is processed by proprotein-convertases to its mature form which is degraded upon phorbol ester stimulation. Eur J Biochem 2003,270(11):2386–2393.CrossRefPubMed
25.
go back to reference Howard L, Maciewicz RA, Blobel CP: Cloning and characterization of ADAM28: evidence for autocatalytic pro-domain removal and for cell surface localization of mature ADAM28. Biochem J 2000,348(Pt 1):21–27.CrossRefPubMedPubMedCentral Howard L, Maciewicz RA, Blobel CP: Cloning and characterization of ADAM28: evidence for autocatalytic pro-domain removal and for cell surface localization of mature ADAM28. Biochem J 2000,348(Pt 1):21–27.CrossRefPubMedPubMedCentral
26.
go back to reference Schlomann U, Wildeboer D, Webster A, Antropova O, Zeuschner D, Knight CG, Docherty AJ, Lambert M, Skelton L, Jockusch H, Bartsch JW: The metalloprotease disintegrin ADAM8. Processing by autocatalysis is required for proteolytic activity and cell adhesion. J Biol Chem 2002,277(50):48210–48219.CrossRefPubMed Schlomann U, Wildeboer D, Webster A, Antropova O, Zeuschner D, Knight CG, Docherty AJ, Lambert M, Skelton L, Jockusch H, Bartsch JW: The metalloprotease disintegrin ADAM8. Processing by autocatalysis is required for proteolytic activity and cell adhesion. J Biol Chem 2002,277(50):48210–48219.CrossRefPubMed
27.
go back to reference Jones GC, Riley GP: ADAMTS proteinases: a multi-domain, multi-functional family with roles in extracellular matrix turnover and arthritis. Arthritis Res Ther 2005,7(4):160–169.CrossRefPubMedPubMedCentral Jones GC, Riley GP: ADAMTS proteinases: a multi-domain, multi-functional family with roles in extracellular matrix turnover and arthritis. Arthritis Res Ther 2005,7(4):160–169.CrossRefPubMedPubMedCentral
28.
go back to reference Amour A, Slocombe PM, Webster A, Butler M, Knight CG, Smith BJ, Stephens PE, Shelley C, Hutton M, Knauper V, Docherty AJ, Murphy G: TNF-alpha converting enzyme (TACE) is inhibited by TIMP-3. FEBS Lett 1998,435(1):39–44.CrossRefPubMed Amour A, Slocombe PM, Webster A, Butler M, Knight CG, Smith BJ, Stephens PE, Shelley C, Hutton M, Knauper V, Docherty AJ, Murphy G: TNF-alpha converting enzyme (TACE) is inhibited by TIMP-3. FEBS Lett 1998,435(1):39–44.CrossRefPubMed
29.
go back to reference Amour A, Knight CG, Webster A, Slocombe PM, Stephens PE, Knauper V, Docherty AJ, Murphy G: The in vitro activity of ADAM-10 is inhibited by TIMP-1 and TIMP-3. FEBS Lett 2000,473(3):275–279.CrossRefPubMed Amour A, Knight CG, Webster A, Slocombe PM, Stephens PE, Knauper V, Docherty AJ, Murphy G: The in vitro activity of ADAM-10 is inhibited by TIMP-1 and TIMP-3. FEBS Lett 2000,473(3):275–279.CrossRefPubMed
30.
go back to reference Wayne GJ, Deng SJ, Amour A, Borman S, Matico R, Carter HL, Murphy G: TIMP-3 inhibition of ADAMTS-4 (Aggrecanase-1) is modulated by interactions between aggrecan and the C-terminal domain of ADAMTS-4. J Biol Chem 2007,282(29):20991–20998.CrossRefPubMed Wayne GJ, Deng SJ, Amour A, Borman S, Matico R, Carter HL, Murphy G: TIMP-3 inhibition of ADAMTS-4 (Aggrecanase-1) is modulated by interactions between aggrecan and the C-terminal domain of ADAMTS-4. J Biol Chem 2007,282(29):20991–20998.CrossRefPubMed
32.
go back to reference Wisniewska M, Goettig P, Maskos K, Belouski E, Winters D, Hecht R, Black R, Bode W: Structural determinants of the ADAM inhibition by TIMP-3: crystal structure of the TACE-N-TIMP-3 complex. J Mol Biol 2008,381(5):1307–1319.CrossRefPubMed Wisniewska M, Goettig P, Maskos K, Belouski E, Winters D, Hecht R, Black R, Bode W: Structural determinants of the ADAM inhibition by TIMP-3: crystal structure of the TACE-N-TIMP-3 complex. J Mol Biol 2008,381(5):1307–1319.CrossRefPubMed
33.
go back to reference Troeberg L, Fushimi K, Scilabra SD, Nakamura H, Dive V, Thogersen IB, Enghild JJ, Nagase H: The C-terminal domains of ADAMTS-4 and ADAMTS-5 promote association with N-TIMP-3. Matrix Biol 2009,28(8):463–9.CrossRefPubMedPubMedCentral Troeberg L, Fushimi K, Scilabra SD, Nakamura H, Dive V, Thogersen IB, Enghild JJ, Nagase H: The C-terminal domains of ADAMTS-4 and ADAMTS-5 promote association with N-TIMP-3. Matrix Biol 2009,28(8):463–9.CrossRefPubMedPubMedCentral
34.
go back to reference Ortiz RM, Karkkainen I, Huovila AP: Aberrant alternative exon use and increased copy number of human metalloprotease-disintegrin ADAM15 gene in breast cancer cells. Genes Chromosomes Cancer 2004,41(4):366–378.CrossRefPubMed Ortiz RM, Karkkainen I, Huovila AP: Aberrant alternative exon use and increased copy number of human metalloprotease-disintegrin ADAM15 gene in breast cancer cells. Genes Chromosomes Cancer 2004,41(4):366–378.CrossRefPubMed
35.
go back to reference Primakoff P, Hyatt H, Tredick-Kline J: Identification and purification of a sperm surface protein with a potential role in sperm-egg membrane fusion. J Cell Biol 1987,104(1):141–149.CrossRefPubMed Primakoff P, Hyatt H, Tredick-Kline J: Identification and purification of a sperm surface protein with a potential role in sperm-egg membrane fusion. J Cell Biol 1987,104(1):141–149.CrossRefPubMed
36.
go back to reference Evans JP: Fertilin beta and other ADAMs as integrin ligands: insights into cell adhesion and fertilization. Bioessays 2001,23(7):628–639.CrossRefPubMed Evans JP: Fertilin beta and other ADAMs as integrin ligands: insights into cell adhesion and fertilization. Bioessays 2001,23(7):628–639.CrossRefPubMed
38.
go back to reference Ham C, Levkau B, Raines EW, Herren B: ADAM15 is an adherens junction molecule whose surface expression can be driven by VE-cadherin. Exp Cell Res 2002,279(2):239–247.CrossRefPubMed Ham C, Levkau B, Raines EW, Herren B: ADAM15 is an adherens junction molecule whose surface expression can be driven by VE-cadherin. Exp Cell Res 2002,279(2):239–247.CrossRefPubMed
39.
go back to reference Moss ML, Jin SL, Milla ME, Bickett DM, Burkhart W, Carter HL, Chen WJ, Clay WC, Didsbury JR, Hassler D, Hoffman CR, Kost TA, Lambert MH, Leesnitzer MA, McCauley P, McGeehan G, Mitchell J, Moyer M, Pahel G, Rocque W, Overton LK, Schoenen F, Seaton T, Su JL, Becherer JD: Cloning of a disintegrin metalloproteinase that processes precursor tumour-necrosis factor-alpha. Nature 1997,385(6618):733–736.CrossRefPubMed Moss ML, Jin SL, Milla ME, Bickett DM, Burkhart W, Carter HL, Chen WJ, Clay WC, Didsbury JR, Hassler D, Hoffman CR, Kost TA, Lambert MH, Leesnitzer MA, McCauley P, McGeehan G, Mitchell J, Moyer M, Pahel G, Rocque W, Overton LK, Schoenen F, Seaton T, Su JL, Becherer JD: Cloning of a disintegrin metalloproteinase that processes precursor tumour-necrosis factor-alpha. Nature 1997,385(6618):733–736.CrossRefPubMed
40.
42.
go back to reference Colige A, Ruggiero F, Vandenberghe I, Dubail J, Kesteloot F, Van Beeumen J, Beschin A, Brys L, Lapiere CM, Nusgens B: Domains and maturation processes that regulate the activity of ADAMTS-2, a metalloproteinase cleaving the aminopropeptide of fibrillar procollagens types I-III and V. J Biol Chem 2005,280(41):34397–34408.CrossRefPubMed Colige A, Ruggiero F, Vandenberghe I, Dubail J, Kesteloot F, Van Beeumen J, Beschin A, Brys L, Lapiere CM, Nusgens B: Domains and maturation processes that regulate the activity of ADAMTS-2, a metalloproteinase cleaving the aminopropeptide of fibrillar procollagens types I-III and V. J Biol Chem 2005,280(41):34397–34408.CrossRefPubMed
43.
go back to reference McGowan PM, McKiernan E, Bolster F, Ryan BM, Hill AD, McDermott EW, Evoy D, O'Higgins N, Crown J, Duffy MJ: ADAM-17 predicts adverse outcome in patients with breast cancer. Ann Oncol 2008,19(6):1075–1081.CrossRefPubMed McGowan PM, McKiernan E, Bolster F, Ryan BM, Hill AD, McDermott EW, Evoy D, O'Higgins N, Crown J, Duffy MJ: ADAM-17 predicts adverse outcome in patients with breast cancer. Ann Oncol 2008,19(6):1075–1081.CrossRefPubMed
44.
go back to reference Malfait AM, Liu RQ, Ijiri K, Komiya S, Tortorella MD: Inhibition of ADAM-TS4 and ADAM-TS5 prevents aggrecan degradation in osteoarthritic cartilage. J Biol Chem 2002,277(25):22201–22208.CrossRefPubMed Malfait AM, Liu RQ, Ijiri K, Komiya S, Tortorella MD: Inhibition of ADAM-TS4 and ADAM-TS5 prevents aggrecan degradation in osteoarthritic cartilage. J Biol Chem 2002,277(25):22201–22208.CrossRefPubMed
45.
go back to reference Majumdar MK, Askew R, Schelling S, Stedman N, Blanchet T, Hopkins B, Morris EA, Glasson SS: Double-knockout of ADAMTS-4 and ADAMTS-5 in mice results in physiologically normal animals and prevents the progression of osteoarthritis. Arthritis Rheum 2007,56(11):3670–3674.CrossRefPubMed Majumdar MK, Askew R, Schelling S, Stedman N, Blanchet T, Hopkins B, Morris EA, Glasson SS: Double-knockout of ADAMTS-4 and ADAMTS-5 in mice results in physiologically normal animals and prevents the progression of osteoarthritis. Arthritis Rheum 2007,56(11):3670–3674.CrossRefPubMed
46.
go back to reference Prinzen C, Trumbach D, Wurst W, Endres K, Postina R, Fahrenholz F: Differential gene expression in ADAM10 and mutant ADAM10 transgenic mice. BMC Genomics 2009, 10:66.CrossRefPubMedPubMedCentral Prinzen C, Trumbach D, Wurst W, Endres K, Postina R, Fahrenholz F: Differential gene expression in ADAM10 and mutant ADAM10 transgenic mice. BMC Genomics 2009, 10:66.CrossRefPubMedPubMedCentral
47.
go back to reference Postina R, Schroeder A, Dewachter I, Bohl J, Schmitt U, Kojro E, Prinzen C, Endres K, Hiemke C, Blessing M, Flamez P, Dequenne A, Godaux E, van Leuven F, Fahrenholz F: A disintegrin-metalloproteinase prevents amyloid plaque formation and hippocampal defects in an Alzheimer disease mouse model. J Clin Invest 2004,113(10):1456–1464.CrossRefPubMedPubMedCentral Postina R, Schroeder A, Dewachter I, Bohl J, Schmitt U, Kojro E, Prinzen C, Endres K, Hiemke C, Blessing M, Flamez P, Dequenne A, Godaux E, van Leuven F, Fahrenholz F: A disintegrin-metalloproteinase prevents amyloid plaque formation and hippocampal defects in an Alzheimer disease mouse model. J Clin Invest 2004,113(10):1456–1464.CrossRefPubMedPubMedCentral
48.
go back to reference Zolkiewska A: Disintegrin-like/cysteine-rich region of ADAM 12 is an active cell adhesion domain. Exp Cell Res 1999,252(2):423–431.CrossRefPubMed Zolkiewska A: Disintegrin-like/cysteine-rich region of ADAM 12 is an active cell adhesion domain. Exp Cell Res 1999,252(2):423–431.CrossRefPubMed
49.
go back to reference Dijkstra A, Postma DS, Noordhoek JA, Lodewijk ME, Kauffman HF, ten Hacken NH, Timens W: Expression of ADAMs ("a disintegrin and metalloprotease") in the human lung. Virchows Arch 2009,454(4):441–449.CrossRefPubMed Dijkstra A, Postma DS, Noordhoek JA, Lodewijk ME, Kauffman HF, ten Hacken NH, Timens W: Expression of ADAMs ("a disintegrin and metalloprotease") in the human lung. Virchows Arch 2009,454(4):441–449.CrossRefPubMed
50.
go back to reference Rocks N, Paulissen G, Quesada Calvo F, Polette M, Gueders M, Munaut C, Foidart JM, Noel A, Birembaut P, Cataldo D: Expression of a disintegrin and metalloprotease (ADAM and ADAMTS) enzymes in human non-small-cell lung carcinomas (NSCLC). Br J Cancer 2006,94(5):724–730.PubMedPubMedCentral Rocks N, Paulissen G, Quesada Calvo F, Polette M, Gueders M, Munaut C, Foidart JM, Noel A, Birembaut P, Cataldo D: Expression of a disintegrin and metalloprotease (ADAM and ADAMTS) enzymes in human non-small-cell lung carcinomas (NSCLC). Br J Cancer 2006,94(5):724–730.PubMedPubMedCentral
51.
go back to reference Paulissen G, Rocks N, Quesada-Calvo F, Gosset P, Foidart JM, Noel A, Louis R, Cataldo DD: Expression of ADAMs and their inhibitors in sputum from patients with asthma. Mol Med 2006,12(7–8):171–179.CrossRefPubMedPubMedCentral Paulissen G, Rocks N, Quesada-Calvo F, Gosset P, Foidart JM, Noel A, Louis R, Cataldo DD: Expression of ADAMs and their inhibitors in sputum from patients with asthma. Mol Med 2006,12(7–8):171–179.CrossRefPubMedPubMedCentral
52.
go back to reference Keating DT, Sadlier DM, Patricelli A, Smith SM, Walls D, Egan JJ, Doran PP: Microarray identifies ADAM family members as key responders to TGF-beta1 in alveolar epithelial cells. Respir Res 2006, 7:114.CrossRefPubMedPubMedCentral Keating DT, Sadlier DM, Patricelli A, Smith SM, Walls D, Egan JJ, Doran PP: Microarray identifies ADAM family members as key responders to TGF-beta1 in alveolar epithelial cells. Respir Res 2006, 7:114.CrossRefPubMedPubMedCentral
53.
go back to reference Van Eerdewegh P, Little RD, Dupuis J, Del Mastro RG, Falls K, Simon J, Torrey D, Pandit S, McKenny J, Braunschweiger K, Walsh A, Liu Z, Hayward B, Folz C, Manning SP, Bawa A, Saracino L, Thackston M, Benchekroun Y, Capparell N, Wang M, Adair R, Feng Y, Dubois J, FitzGerald MG, Huang H, Gibson R, Allen KM, Pedan A, Danzig MR, et al.: Association of the ADAM33 gene with asthma and bronchial hyperresponsiveness. Nature 2002,418(6896):426–430.CrossRefPubMed Van Eerdewegh P, Little RD, Dupuis J, Del Mastro RG, Falls K, Simon J, Torrey D, Pandit S, McKenny J, Braunschweiger K, Walsh A, Liu Z, Hayward B, Folz C, Manning SP, Bawa A, Saracino L, Thackston M, Benchekroun Y, Capparell N, Wang M, Adair R, Feng Y, Dubois J, FitzGerald MG, Huang H, Gibson R, Allen KM, Pedan A, Danzig MR, et al.: Association of the ADAM33 gene with asthma and bronchial hyperresponsiveness. Nature 2002,418(6896):426–430.CrossRefPubMed
54.
go back to reference Powell RM, Wicks J, Holloway JW, Holgate ST, Davies DE: The splicing and fate of ADAM33 transcripts in primary human airways fibroblasts. Am J Respir Cell Mol Biol 2004,31(1):13–21.CrossRefPubMed Powell RM, Wicks J, Holloway JW, Holgate ST, Davies DE: The splicing and fate of ADAM33 transcripts in primary human airways fibroblasts. Am J Respir Cell Mol Biol 2004,31(1):13–21.CrossRefPubMed
55.
go back to reference Haitchi HM, Powell RM, Shaw TJ, Howarth PH, Wilson SJ, Wilson DI, Holgate ST, Davies DE: ADAM33 expression in asthmatic airways and human embryonic lungs. Am J Respir Crit Care Med 2005,171(9):958–965.CrossRefPubMed Haitchi HM, Powell RM, Shaw TJ, Howarth PH, Wilson SJ, Wilson DI, Holgate ST, Davies DE: ADAM33 expression in asthmatic airways and human embryonic lungs. Am J Respir Crit Care Med 2005,171(9):958–965.CrossRefPubMed
56.
go back to reference Yang Y, Haitchi HM, Cakebread J, Sammut D, Harvey A, Powell RM, Holloway JW, Howarth P, Holgate ST, Davies DE: Epigenetic mechanisms silence a disintegrin and metalloprotease 33 expression in bronchial epithelial cells. J Allergy Clin Immunol 2008,121(6):1393–1399. 1399 e1391–1314CrossRefPubMed Yang Y, Haitchi HM, Cakebread J, Sammut D, Harvey A, Powell RM, Holloway JW, Howarth P, Holgate ST, Davies DE: Epigenetic mechanisms silence a disintegrin and metalloprotease 33 expression in bronchial epithelial cells. J Allergy Clin Immunol 2008,121(6):1393–1399. 1399 e1391–1314CrossRefPubMed
57.
go back to reference Foley SC, Mogas AK, Olivenstein R, Fiset PO, Chakir J, Bourbeau J, Ernst P, Lemiere C, Martin JG, Hamid Q: Increased expression of ADAM33 and ADAM8 with disease progression in asthma. J Allergy Clin Immunol 2007,119(4):863–871.CrossRefPubMed Foley SC, Mogas AK, Olivenstein R, Fiset PO, Chakir J, Bourbeau J, Ernst P, Lemiere C, Martin JG, Hamid Q: Increased expression of ADAM33 and ADAM8 with disease progression in asthma. J Allergy Clin Immunol 2007,119(4):863–871.CrossRefPubMed
58.
go back to reference Chiba Y, Onoda S, Hattori Y, Maitani Y, Sakai H, Misawa M: Upregulation of ADAM8 in the airways of mice with allergic bronchial asthma. Lung 2009,187(3):179–185.CrossRefPubMed Chiba Y, Onoda S, Hattori Y, Maitani Y, Sakai H, Misawa M: Upregulation of ADAM8 in the airways of mice with allergic bronchial asthma. Lung 2009,187(3):179–185.CrossRefPubMed
59.
go back to reference King NE, Zimmermann N, Pope SM, Fulkerson PC, Nikolaidis NM, Mishra A, Witte DP, Rothenberg ME: Expression and regulation of a disintegrin and metalloproteinase (ADAM) 8 in experimental asthma. Am J Respir Cell Mol Biol 2004,31(3):257–265.CrossRefPubMed King NE, Zimmermann N, Pope SM, Fulkerson PC, Nikolaidis NM, Mishra A, Witte DP, Rothenberg ME: Expression and regulation of a disintegrin and metalloproteinase (ADAM) 8 in experimental asthma. Am J Respir Cell Mol Biol 2004,31(3):257–265.CrossRefPubMed
60.
go back to reference Matsuno O, Miyazaki E, Nureki S, Ueno T, Kumamoto T, Higuchi Y: Role of ADAM8 in experimental asthma. Immunol Lett 2006,102(1):67–73.CrossRefPubMed Matsuno O, Miyazaki E, Nureki S, Ueno T, Kumamoto T, Higuchi Y: Role of ADAM8 in experimental asthma. Immunol Lett 2006,102(1):67–73.CrossRefPubMed
61.
go back to reference Bousquet J, Jeffery PK, Busse WW, Johnson M, Vignola AM: Asthma. From bronchoconstriction to airways inflammation and remodeling. Am J Respir Crit Care Med 2000,161(5):1720–1745.CrossRefPubMed Bousquet J, Jeffery PK, Busse WW, Johnson M, Vignola AM: Asthma. From bronchoconstriction to airways inflammation and remodeling. Am J Respir Crit Care Med 2000,161(5):1720–1745.CrossRefPubMed
62.
63.
go back to reference Noguchi E, Ohtsuki Y, Tokunaga K, Yamaoka-Sageshima M, Ichikawa K, Aoki T, Shibasaki M, Arinami T: ADAM33 polymorphisms are associated with asthma susceptibility in a Japanese population. Clin Exp Allergy 2006,36(5):602–608.CrossRefPubMed Noguchi E, Ohtsuki Y, Tokunaga K, Yamaoka-Sageshima M, Ichikawa K, Aoki T, Shibasaki M, Arinami T: ADAM33 polymorphisms are associated with asthma susceptibility in a Japanese population. Clin Exp Allergy 2006,36(5):602–608.CrossRefPubMed
64.
go back to reference Werner M, Herbon N, Gohlke H, Altmuller J, Knapp M, Heinrich J, Wjst M: Asthma is associated with single-nucleotide polymorphisms in ADAM33. Clin Exp Allergy 2004,34(1):26–31.CrossRefPubMed Werner M, Herbon N, Gohlke H, Altmuller J, Knapp M, Heinrich J, Wjst M: Asthma is associated with single-nucleotide polymorphisms in ADAM33. Clin Exp Allergy 2004,34(1):26–31.CrossRefPubMed
65.
go back to reference Howard TD, Postma DS, Jongepier H, Moore WC, Koppelman GH, Zheng SL, Xu J, Bleecker ER, Meyers DA: Association of a disintegrin and metalloprotease 33 (ADAM33) gene with asthma in ethnically diverse populations. J Allergy Clin Immunol 2003,112(4):717–722.CrossRefPubMed Howard TD, Postma DS, Jongepier H, Moore WC, Koppelman GH, Zheng SL, Xu J, Bleecker ER, Meyers DA: Association of a disintegrin and metalloprotease 33 (ADAM33) gene with asthma in ethnically diverse populations. J Allergy Clin Immunol 2003,112(4):717–722.CrossRefPubMed
66.
go back to reference Hirota T, Hasegawa K, Obara K, Matsuda A, Akahoshi M, Nakashima K, Shirakawa T, Doi S, Fujita K, Suzuki Y, Nakamura Y, Tamari M: Association between ADAM33 polymorphisms and adult asthma in the Japanese population. Clin Exp Allergy 2006,36(7):884–891.CrossRefPubMed Hirota T, Hasegawa K, Obara K, Matsuda A, Akahoshi M, Nakashima K, Shirakawa T, Doi S, Fujita K, Suzuki Y, Nakamura Y, Tamari M: Association between ADAM33 polymorphisms and adult asthma in the Japanese population. Clin Exp Allergy 2006,36(7):884–891.CrossRefPubMed
67.
go back to reference Wang P, Liu QJ, Li JS, Li HC, Wei CH, Guo CH, Gong YQ: Lack of association between ADAM33 gene and asthma in a Chinese population. Int J Immunogenet 2006,33(4):303–306.CrossRefPubMed Wang P, Liu QJ, Li JS, Li HC, Wei CH, Guo CH, Gong YQ: Lack of association between ADAM33 gene and asthma in a Chinese population. Int J Immunogenet 2006,33(4):303–306.CrossRefPubMed
68.
go back to reference Lind DL, Choudhry S, Ung N, Ziv E, Avila PC, Salari K, Ha C, Lovins EG, Coyle NE, Nazario S, Casal J, Torres A, Rodriguez-Santana JR, Matallana H, Lilly CM, Salas J, Selman M, Boushey HA, Weiss ST, Chapela R, Ford JG, Rodriguez-Cintron W, Silverman EK, Sheppard D, Kwok PY, González Burchard E: ADAM33 is not associated with asthma in Puerto Rican or Mexican populations. Am J Respir Crit Care Med 2003,168(11):1312–1316.CrossRefPubMed Lind DL, Choudhry S, Ung N, Ziv E, Avila PC, Salari K, Ha C, Lovins EG, Coyle NE, Nazario S, Casal J, Torres A, Rodriguez-Santana JR, Matallana H, Lilly CM, Salas J, Selman M, Boushey HA, Weiss ST, Chapela R, Ford JG, Rodriguez-Cintron W, Silverman EK, Sheppard D, Kwok PY, González Burchard E: ADAM33 is not associated with asthma in Puerto Rican or Mexican populations. Am J Respir Crit Care Med 2003,168(11):1312–1316.CrossRefPubMed
69.
go back to reference Garlisi CG, Zou J, Devito KE, Tian F, Zhu FX, Liu J, Shah H, Wan Y, Motasim Billah M, Egan RW, Umland SP: Human ADAM33: protein maturation and localization. Biochem Biophys Res Commun 2003,301(1):35–43.CrossRefPubMed Garlisi CG, Zou J, Devito KE, Tian F, Zhu FX, Liu J, Shah H, Wan Y, Motasim Billah M, Egan RW, Umland SP: Human ADAM33: protein maturation and localization. Biochem Biophys Res Commun 2003,301(1):35–43.CrossRefPubMed
70.
go back to reference Puxeddu I, Pang YY, Harvey A, Haitchi HM, Nicholas B, Yoshisue H, Ribatti D, Clough G, Powell RM, Murphy G, Hanley NA, Wilson DI, Howarth PH, Holgate ST, Davies DE: The soluble form of a disintegrin and metalloprotease 33 promotes angiogenesis: implications for airway remodeling in asthma. J Allergy Clin Immunol 2008,121(6):1400–1406. 1406 e1401–1404CrossRefPubMed Puxeddu I, Pang YY, Harvey A, Haitchi HM, Nicholas B, Yoshisue H, Ribatti D, Clough G, Powell RM, Murphy G, Hanley NA, Wilson DI, Howarth PH, Holgate ST, Davies DE: The soluble form of a disintegrin and metalloprotease 33 promotes angiogenesis: implications for airway remodeling in asthma. J Allergy Clin Immunol 2008,121(6):1400–1406. 1406 e1401–1404CrossRefPubMed
71.
go back to reference Jie Z, Jin M, Cai Y, Bai C, Shen Y, Yuan Z, Hu Y, Holgate S: The effects of Th2 cytokines on the expression of ADAM33 in allergen-induced chronic airway inflammation. Respir Physiol Neurobiol 2009,168(3):289–294.CrossRefPubMed Jie Z, Jin M, Cai Y, Bai C, Shen Y, Yuan Z, Hu Y, Holgate S: The effects of Th2 cytokines on the expression of ADAM33 in allergen-induced chronic airway inflammation. Respir Physiol Neurobiol 2009,168(3):289–294.CrossRefPubMed
72.
go back to reference Chen C, Huang X, Sheppard D: ADAM33 is not essential for growth and development and does not modulate allergic asthma in mice. Mol Cell Biol 2006,26(18):6950–6956.CrossRefPubMedPubMedCentral Chen C, Huang X, Sheppard D: ADAM33 is not essential for growth and development and does not modulate allergic asthma in mice. Mol Cell Biol 2006,26(18):6950–6956.CrossRefPubMedPubMedCentral
73.
go back to reference Di Valentin E, Crahay C, Garbacki N, Hennuy B, Gueders M, Noel A, Foidart JM, Grooten J, Colige A, Piette J, Cataldo D: New asthma biomarkers: lessons from murine models of acute and chronic asthma. Am J Physiol Lung Cell Mol Physiol 2009,296(2):L185–197.CrossRefPubMed Di Valentin E, Crahay C, Garbacki N, Hennuy B, Gueders M, Noel A, Foidart JM, Grooten J, Colige A, Piette J, Cataldo D: New asthma biomarkers: lessons from murine models of acute and chronic asthma. Am J Physiol Lung Cell Mol Physiol 2009,296(2):L185–197.CrossRefPubMed
74.
go back to reference Tremblay K, Lemire M, Potvin C, Tremblay A, Hunninghake GM, Raby BA, Hudson TJ, Perez-Iratxeta C, Andrade-Navarro MA, Laprise C: Genes to diseases (G2D) computational method to identify asthma candidate genes. PLoS ONE 2008,3(8):e2907.CrossRefPubMedPubMedCentral Tremblay K, Lemire M, Potvin C, Tremblay A, Hunninghake GM, Raby BA, Hudson TJ, Perez-Iratxeta C, Andrade-Navarro MA, Laprise C: Genes to diseases (G2D) computational method to identify asthma candidate genes. PLoS ONE 2008,3(8):e2907.CrossRefPubMedPubMedCentral
75.
go back to reference Fourie AM, Coles F, Moreno V, Karlsson L: Catalytic activity of ADAM8, ADAM15, and MDC-L (ADAM28) on synthetic peptide substrates and in ectodomain cleavage of CD23. J Biol Chem 2003,278(33):30469–30477.CrossRefPubMed Fourie AM, Coles F, Moreno V, Karlsson L: Catalytic activity of ADAM8, ADAM15, and MDC-L (ADAM28) on synthetic peptide substrates and in ectodomain cleavage of CD23. J Biol Chem 2003,278(33):30469–30477.CrossRefPubMed
76.
go back to reference Naus S, Reipschlager S, Wildeboer D, Lichtenthaler SF, Mitterreiter S, Guan Z, Moss ML, Bartsch JW: Identification of candidate substrates for ectodomain shedding by the metalloprotease-disintegrin ADAM8. Biol Chem 2006,387(3):337–346.CrossRefPubMed Naus S, Reipschlager S, Wildeboer D, Lichtenthaler SF, Mitterreiter S, Guan Z, Moss ML, Bartsch JW: Identification of candidate substrates for ectodomain shedding by the metalloprotease-disintegrin ADAM8. Biol Chem 2006,387(3):337–346.CrossRefPubMed
77.
go back to reference Kelly K, Hutchinson G, Nebenius-Oosthuizen D, Smith AJ, Bartsch JW, Horiuchi K, Rittger A, Manova K, Docherty AJ, Blobel CP: Metalloprotease-disintegrin ADAM8: expression analysis and targeted deletion in mice. Dev Dyn 2005,232(1):221–231.CrossRefPubMed Kelly K, Hutchinson G, Nebenius-Oosthuizen D, Smith AJ, Bartsch JW, Horiuchi K, Rittger A, Manova K, Docherty AJ, Blobel CP: Metalloprotease-disintegrin ADAM8: expression analysis and targeted deletion in mice. Dev Dyn 2005,232(1):221–231.CrossRefPubMed
78.
go back to reference van Diemen CC, Postma DS, Vonk JM, Bruinenberg M, Schouten JP, Boezen HM: A disintegrin and metalloprotease 33 polymorphisms and lung function decline in the general population. Am J Respir Crit Care Med 2005,172(3):329–333.CrossRefPubMed van Diemen CC, Postma DS, Vonk JM, Bruinenberg M, Schouten JP, Boezen HM: A disintegrin and metalloprotease 33 polymorphisms and lung function decline in the general population. Am J Respir Crit Care Med 2005,172(3):329–333.CrossRefPubMed
79.
go back to reference Gosman MM, Boezen HM, van Diemen CC, Snoeck-Stroband JB, Lapperre TS, Hiemstra PS, Ten Hacken NH, Stolk J, Postma DS: A disintegrin and metalloprotease 33 and chronic obstructive pulmonary disease pathophysiology. Thorax 2007,62(3):242–247.CrossRefPubMed Gosman MM, Boezen HM, van Diemen CC, Snoeck-Stroband JB, Lapperre TS, Hiemstra PS, Ten Hacken NH, Stolk J, Postma DS: A disintegrin and metalloprotease 33 and chronic obstructive pulmonary disease pathophysiology. Thorax 2007,62(3):242–247.CrossRefPubMed
80.
go back to reference Ju CR, Xia XZ, Chen RC: Expressions of tumor necrosis factor-converting enzyme and ErbB3 in rats with chronic obstructive pulmonary disease. Chin Med J (Engl) 2007,120(17):1505–1510. Ju CR, Xia XZ, Chen RC: Expressions of tumor necrosis factor-converting enzyme and ErbB3 in rats with chronic obstructive pulmonary disease. Chin Med J (Engl) 2007,120(17):1505–1510.
81.
go back to reference Shao MX, Nakanaga T, Nadel JA: Cigarette smoke induces MUC5AC mucin overproduction via tumor necrosis factor-alpha-converting enzyme in human airway epithelial (NCI-H292) cells. Am J Physiol Lung Cell Mol Physiol 2004,287(2):L420–427.CrossRefPubMed Shao MX, Nakanaga T, Nadel JA: Cigarette smoke induces MUC5AC mucin overproduction via tumor necrosis factor-alpha-converting enzyme in human airway epithelial (NCI-H292) cells. Am J Physiol Lung Cell Mol Physiol 2004,287(2):L420–427.CrossRefPubMed
82.
go back to reference Ito I, Laporte JD, Fiset PO, Asai K, Yamauchi Y, Martin JG, Hamid Q: Downregulation of a disintegrin and metalloproteinase 33 by IFN-gamma in human airway smooth muscle cells. J Allergy Clin Immunol 2007,119(1):89–97.CrossRefPubMed Ito I, Laporte JD, Fiset PO, Asai K, Yamauchi Y, Martin JG, Hamid Q: Downregulation of a disintegrin and metalloproteinase 33 by IFN-gamma in human airway smooth muscle cells. J Allergy Clin Immunol 2007,119(1):89–97.CrossRefPubMed
83.
go back to reference Sadeghnejad A, Ohar JA, Zheng SL, Sterling DA, Hawkins GA, Meyers DA, Bleecker ER: Adam33 polymorphisms are associated with COPD and lung function in long-term tobacco smokers. Respir Res 2009, 10:21.CrossRefPubMedPubMedCentral Sadeghnejad A, Ohar JA, Zheng SL, Sterling DA, Hawkins GA, Meyers DA, Bleecker ER: Adam33 polymorphisms are associated with COPD and lung function in long-term tobacco smokers. Respir Res 2009, 10:21.CrossRefPubMedPubMedCentral
84.
go back to reference Kurz T, Hoffjan S, Hayes MG, Schneider D, Nicolae R, Heinzmann A, Jerkic SP, Parry R, Cox NJ, Deichmann KA, Ober C: Fine mapping and positional candidate studies on chromosome 5p13 identify multiple asthma susceptibility loci. J Allergy Clin Immunol 2006,118(2):396–402.CrossRefPubMed Kurz T, Hoffjan S, Hayes MG, Schneider D, Nicolae R, Heinzmann A, Jerkic SP, Parry R, Cox NJ, Deichmann KA, Ober C: Fine mapping and positional candidate studies on chromosome 5p13 identify multiple asthma susceptibility loci. J Allergy Clin Immunol 2006,118(2):396–402.CrossRefPubMed
85.
go back to reference Shintani Y, Higashiyama S, Ohta M, Hirabayashi H, Yamamoto S, Yoshimasu T, Matsuda H, Matsuura N: Overexpression of ADAM9 in non-small cell lung cancer correlates with brain metastasis. Cancer Res 2004,64(12):4190–4196.CrossRefPubMed Shintani Y, Higashiyama S, Ohta M, Hirabayashi H, Yamamoto S, Yoshimasu T, Matsuda H, Matsuura N: Overexpression of ADAM9 in non-small cell lung cancer correlates with brain metastasis. Cancer Res 2004,64(12):4190–4196.CrossRefPubMed
86.
go back to reference Booth BW, Sandifer T, Martin EL, Martin LD: IL-13-induced proliferation of airway epithelial cells: mediation by intracellular growth factor mobilization and ADAM17. Respir Res 2007, 8:51.CrossRefPubMedPubMedCentral Booth BW, Sandifer T, Martin EL, Martin LD: IL-13-induced proliferation of airway epithelial cells: mediation by intracellular growth factor mobilization and ADAM17. Respir Res 2007, 8:51.CrossRefPubMedPubMedCentral
87.
go back to reference Haidl ID, Huber G, Eichmann K: An ADAM family member with expression in thymic epithelial cells and related tissues. Gene 2002,283(1–2):163–170.CrossRefPubMed Haidl ID, Huber G, Eichmann K: An ADAM family member with expression in thymic epithelial cells and related tissues. Gene 2002,283(1–2):163–170.CrossRefPubMed
88.
go back to reference Umland SP, Garlisi CG, Shah H, Wan Y, Zou J, Devito KE, Huang WM, Gustafson EL, Ralston R: Human ADAM33 messenger RNA expression profile and post-transcriptional regulation. Am J Respir Cell Mol Biol 2003,29(5):571–582.CrossRefPubMed Umland SP, Garlisi CG, Shah H, Wan Y, Zou J, Devito KE, Huang WM, Gustafson EL, Ralston R: Human ADAM33 messenger RNA expression profile and post-transcriptional regulation. Am J Respir Cell Mol Biol 2003,29(5):571–582.CrossRefPubMed
89.
go back to reference Lee JH, Park HS, Park SW, Jang AS, Uh ST, Rhim T, Park CS, Hong SJ, Holgate ST, Holloway JW, Shin HD: ADAM33 polymorphism: association with bronchial hyper-responsiveness in Korean asthmatics. Clin Exp Allergy 2004,34(6):860–865.CrossRefPubMed Lee JH, Park HS, Park SW, Jang AS, Uh ST, Rhim T, Park CS, Hong SJ, Holgate ST, Holloway JW, Shin HD: ADAM33 polymorphism: association with bronchial hyper-responsiveness in Korean asthmatics. Clin Exp Allergy 2004,34(6):860–865.CrossRefPubMed
90.
go back to reference Raby BA, Silverman EK, Kwiatkowski DJ, Lange C, Lazarus R, Weiss ST: ADAM33 polymorphisms and phenotype associations in childhood asthma. J Allergy Clin Immunol 2004,113(6):1071–1078.CrossRefPubMed Raby BA, Silverman EK, Kwiatkowski DJ, Lange C, Lazarus R, Weiss ST: ADAM33 polymorphisms and phenotype associations in childhood asthma. J Allergy Clin Immunol 2004,113(6):1071–1078.CrossRefPubMed
91.
go back to reference Jongepier H, Boezen HM, Dijkstra A, Howard TD, Vonk JM, Koppelman GH, Zheng SL, Meyers DA, Bleecker ER, Postma DS: Polymorphisms of the ADAM33 gene are associated with accelerated lung function decline in asthma. Clin Exp Allergy 2004,34(5):757–760.CrossRefPubMed Jongepier H, Boezen HM, Dijkstra A, Howard TD, Vonk JM, Koppelman GH, Zheng SL, Meyers DA, Bleecker ER, Postma DS: Polymorphisms of the ADAM33 gene are associated with accelerated lung function decline in asthma. Clin Exp Allergy 2004,34(5):757–760.CrossRefPubMed
92.
go back to reference Simpson A, Maniatis N, Jury F, Cakebread JA, Lowe LA, Holgate ST, Woodcock A, Ollier WE, Collins A, Custovic A, Holloway JW, John SL: Polymorphisms in a disintegrin and metalloprotease 33 (ADAM33) predict impaired early-life lung function. Am J Respir Crit Care Med 2005,172(1):55–60.CrossRefPubMed Simpson A, Maniatis N, Jury F, Cakebread JA, Lowe LA, Holgate ST, Woodcock A, Ollier WE, Collins A, Custovic A, Holloway JW, John SL: Polymorphisms in a disintegrin and metalloprotease 33 (ADAM33) predict impaired early-life lung function. Am J Respir Crit Care Med 2005,172(1):55–60.CrossRefPubMed
93.
go back to reference Schedel M, Depner M, Schoen C, Weiland SK, Vogelberg C, Niggemann B, Lau S, Illig T, Klopp N, Wahn U, von Mutius E, Nickel R, Kabesch M: The role of polymorphisms in ADAM33, a disintegrin and metalloprotease 33, in childhood asthma and lung function in two German populations. Respir Res 2006, 7:91.CrossRefPubMedPubMedCentral Schedel M, Depner M, Schoen C, Weiland SK, Vogelberg C, Niggemann B, Lau S, Illig T, Klopp N, Wahn U, von Mutius E, Nickel R, Kabesch M: The role of polymorphisms in ADAM33, a disintegrin and metalloprotease 33, in childhood asthma and lung function in two German populations. Respir Res 2006, 7:91.CrossRefPubMedPubMedCentral
94.
go back to reference Kedda MA, Duffy DL, Bradley B, O'Hehir RE, Thompson PJ: ADAM33 haplotypes are associated with asthma in a large Australian population. Eur J Hum Genet 2006,14(9):1027–1036.CrossRefPubMed Kedda MA, Duffy DL, Bradley B, O'Hehir RE, Thompson PJ: ADAM33 haplotypes are associated with asthma in a large Australian population. Eur J Hum Genet 2006,14(9):1027–1036.CrossRefPubMed
95.
go back to reference Hersh CP, Raby BA, Soto-Quiros ME, Murphy AJ, Avila L, Lasky-Su J, Sylvia JS, Klanderman BJ, Lange C, Weiss ST, Celedón JC: Comprehensive testing of positionally cloned asthma genes in two populations. Am J Respir Crit Care Med 2007,176(9):849–857.CrossRefPubMedPubMedCentral Hersh CP, Raby BA, Soto-Quiros ME, Murphy AJ, Avila L, Lasky-Su J, Sylvia JS, Klanderman BJ, Lange C, Weiss ST, Celedón JC: Comprehensive testing of positionally cloned asthma genes in two populations. Am J Respir Crit Care Med 2007,176(9):849–857.CrossRefPubMedPubMedCentral
96.
go back to reference Sakagami T, Jinnai N, Nakajima T, Sekigawa T, Hasegawa T, Suzuki E, Inoue I, Gejyo F: ADAM33 polymorphisms are associated with aspirin-intolerant asthma in the Japanese population. J Hum Genet 2007,52(1):66–72.CrossRefPubMed Sakagami T, Jinnai N, Nakajima T, Sekigawa T, Hasegawa T, Suzuki E, Inoue I, Gejyo F: ADAM33 polymorphisms are associated with aspirin-intolerant asthma in the Japanese population. J Hum Genet 2007,52(1):66–72.CrossRefPubMed
97.
go back to reference Su D, Zhang X, Sui H, Lu F, Jin L, Zhang J: Association of ADAM33 gene polymorphisms with adult allergic asthma and rhinitis in a Chinese Han population. BMC Med Genet 2008, 9:-82. Su D, Zhang X, Sui H, Lu F, Jin L, Zhang J: Association of ADAM33 gene polymorphisms with adult allergic asthma and rhinitis in a Chinese Han population. BMC Med Genet 2008, 9:-82.
98.
go back to reference Thongngarm T, Jameekornrak A, Limwongse C, Sangasapaviliya A, Jirapongsananuruk O, Assawamakin A, Chaiyaratana N, Luangwedchakarn V, Thongnoppakhun W: Association between ADAM33 polymorphisms and asthma in a Thai population. Asian Pac J Allergy Immunol 2008,26(4):205–211.PubMed Thongngarm T, Jameekornrak A, Limwongse C, Sangasapaviliya A, Jirapongsananuruk O, Assawamakin A, Chaiyaratana N, Luangwedchakarn V, Thongnoppakhun W: Association between ADAM33 polymorphisms and asthma in a Thai population. Asian Pac J Allergy Immunol 2008,26(4):205–211.PubMed
99.
go back to reference Zhang X, Su D, Sui H, Jin L, Lu F, Zhang J: Association of ADAM33 gene polymorphisms with adult concomitant allergic rhinitis and asthma in Chinese Han population. Mol Biol Rep 2009,36(6):1505–1509.CrossRefPubMed Zhang X, Su D, Sui H, Jin L, Lu F, Zhang J: Association of ADAM33 gene polymorphisms with adult concomitant allergic rhinitis and asthma in Chinese Han population. Mol Biol Rep 2009,36(6):1505–1509.CrossRefPubMed
100.
go back to reference Blakey JD, Sayers I, Ring SM, Strachan DP, Hall IP: Positionally cloned asthma susceptibility gene polymorphisms and disease risk in the British 1958 Birth Cohort. Thorax 2009,64(5):381–387.CrossRefPubMed Blakey JD, Sayers I, Ring SM, Strachan DP, Hall IP: Positionally cloned asthma susceptibility gene polymorphisms and disease risk in the British 1958 Birth Cohort. Thorax 2009,64(5):381–387.CrossRefPubMed
Metadata
Title
Role of ADAM and ADAMTS metalloproteinases in airway diseases
Authors
Genevieve Paulissen
Natacha Rocks
Maud M Gueders
Celine Crahay
Florence Quesada-Calvo
Sandrine Bekaert
Jonathan Hacha
Mehdi El Hour
Jean-Michel Foidart
Agnes Noel
Didier D Cataldo
Publication date
01-12-2009
Publisher
BioMed Central
Published in
Respiratory Research / Issue 1/2009
Electronic ISSN: 1465-993X
DOI
https://doi.org/10.1186/1465-9921-10-127

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