Skip to main content
Top
Published in: Inflammation 2/2012

01-04-2012

Sec14l3 Is Specifically Expressed in Mouse Airway Ciliated Cells

Authors: Lihua Shan, Shinobu Noritake, Masatoshi Fujiwara, Satoshi Asano, Chikako Yoshida-Noro, Nobuhiro Noro, Keizo Yamashita, Takao Kawakami

Published in: Inflammation | Issue 2/2012

Login to get access

Abstract

Airway epithelium is a key component for airway integrity. Previously, we found that expression of the Sec14l3 gene that encodes a 45-kDa secretory protein is inversely associated with the progression of experimentally induced airway inflammation and degeneration/necrosis of alveolar epithelium. In this report, using in situ hybridization we demonstrated that the ciliated cells in mouse lung selectively express Sec14l3 mRNA. In a three-dimensional culture of mouse tracheal epithelial cells, levels of the Sec14l3 mRNA correlated with the differentiation of ciliated cells. Intranasal infection of adult mice with influenza virus resulted in a 20-fold, progressive decrease in Sec14l3 mRNA expression over 10 days post infection. These results enhance the potential value of Sec14l3 as a ciliated epithelial cell-specific biomarker for the progression of airway inflammations such as airway viral infection and asthma.
Literature
1.
go back to reference Le Visage, C., B. Dunham, P. Flint, and K.W. Leong. 2004. Coculture of mesenchymal stem cells and respiratory epithelial cells to engineer a human composite respiratory mucosa. Tissue Engineering 10: 1426–1435.PubMed Le Visage, C., B. Dunham, P. Flint, and K.W. Leong. 2004. Coculture of mesenchymal stem cells and respiratory epithelial cells to engineer a human composite respiratory mucosa. Tissue Engineering 10: 1426–1435.PubMed
2.
go back to reference Bellini, A., H. Yoshimura, E. Vittori, M. Marini, and S. Mattoli. 1993. Bronchial epithelial cells of patients with asthma release chemoattractant factors for T lymphocytes. Journal of Allergy and Clinical Immunology 92: 412–424.PubMedCrossRef Bellini, A., H. Yoshimura, E. Vittori, M. Marini, and S. Mattoli. 1993. Bronchial epithelial cells of patients with asthma release chemoattractant factors for T lymphocytes. Journal of Allergy and Clinical Immunology 92: 412–424.PubMedCrossRef
3.
go back to reference Marini, M., E. Vittori, J. Hollemborg, and S. Mattoli. 1992. Expression of the potent inflammatory cytokines, granulocyte-macrophage-colony-stimulating factor and interleukin-6 and interleukin-8, in bronchial epithelial cells of patients with asthma. Journal of Allergy and Clinical Immunology 89: 1001–1009.PubMedCrossRef Marini, M., E. Vittori, J. Hollemborg, and S. Mattoli. 1992. Expression of the potent inflammatory cytokines, granulocyte-macrophage-colony-stimulating factor and interleukin-6 and interleukin-8, in bronchial epithelial cells of patients with asthma. Journal of Allergy and Clinical Immunology 89: 1001–1009.PubMedCrossRef
4.
go back to reference Pawankar, R. 2002. Epithelial cells as immunoregulators in allergic airway diseases. Current Opinion in Allergy and Clinical Immunology 2: 1–5.PubMedCrossRef Pawankar, R. 2002. Epithelial cells as immunoregulators in allergic airway diseases. Current Opinion in Allergy and Clinical Immunology 2: 1–5.PubMedCrossRef
5.
go back to reference Chung, K.F. 2001. Cytokines in chronic obstructive pulmonary disease. European Respiratory Journal. Supplement 34: 50s–59s.PubMedCrossRef Chung, K.F. 2001. Cytokines in chronic obstructive pulmonary disease. European Respiratory Journal. Supplement 34: 50s–59s.PubMedCrossRef
6.
go back to reference Thorley, A.J., and T.D. Tetley. 2007. Pulmonary epithelium, cigarette smoke, and chronic obstructive pulmonary disease. International Journal of Chronic Obstructive Pulmonary Disease 2: 409–428.PubMed Thorley, A.J., and T.D. Tetley. 2007. Pulmonary epithelium, cigarette smoke, and chronic obstructive pulmonary disease. International Journal of Chronic Obstructive Pulmonary Disease 2: 409–428.PubMed
7.
go back to reference Coraux, C., R. Hajj, P. Lesimple, and E. Puchelle. 2005. Repair and regeneration of the airway epithelium. médecine/sciences 21: 1063–1069.CrossRef Coraux, C., R. Hajj, P. Lesimple, and E. Puchelle. 2005. Repair and regeneration of the airway epithelium. médecine/sciences 21: 1063–1069.CrossRef
8.
go back to reference Hawgood, S. 1997. Surfactant: composition, structure, and metabolism. In The lung: Scientific foundations, 2nd ed, ed. R.G. Crystal, J.B. West, P.J. Barnes, and E.R. Weibel, 557–571. Philadelphia: Lippincot-Raven. Hawgood, S. 1997. Surfactant: composition, structure, and metabolism. In The lung: Scientific foundations, 2nd ed, ed. R.G. Crystal, J.B. West, P.J. Barnes, and E.R. Weibel, 557–571. Philadelphia: Lippincot-Raven.
9.
go back to reference Lubman, R.L., K.J. Kim, and E.D. Crandall. 1997. Alveolar epithelial barrier properties. In The lung: Scientific foundations, 2nd ed, ed. R.G. Crystal, J.B. West, P.J. Barnes, and E.R. Weibel, 585–602. Philadelphia: Lippincott-Raven. Lubman, R.L., K.J. Kim, and E.D. Crandall. 1997. Alveolar epithelial barrier properties. In The lung: Scientific foundations, 2nd ed, ed. R.G. Crystal, J.B. West, P.J. Barnes, and E.R. Weibel, 585–602. Philadelphia: Lippincott-Raven.
10.
go back to reference Shak, S. 1997. Mucins and lung secretions. In The lung: Scientific foundations, 2nd ed, ed. R.G. Crystal, J.B. West, P.J. Barnes, and E.R. Weibel, 479–483. Philadelphia: Lippincott-Raven. Shak, S. 1997. Mucins and lung secretions. In The lung: Scientific foundations, 2nd ed, ed. R.G. Crystal, J.B. West, P.J. Barnes, and E.R. Weibel, 479–483. Philadelphia: Lippincott-Raven.
11.
go back to reference Glasser, S.W., T.R. Korfhagen, S.E. Wert, M.D. Bruno, K.M. McWilliams, D.K. Vorbroker, and J.A. Whitsett. 1991. Genetic element from human surfactant protein SP-C gene confers bronchiolar-alveolar cell specificity in transgenic mice. American Journal of Physiology 261: L349–L356.PubMed Glasser, S.W., T.R. Korfhagen, S.E. Wert, M.D. Bruno, K.M. McWilliams, D.K. Vorbroker, and J.A. Whitsett. 1991. Genetic element from human surfactant protein SP-C gene confers bronchiolar-alveolar cell specificity in transgenic mice. American Journal of Physiology 261: L349–L356.PubMed
12.
go back to reference Hermans, C., and A. Bernard. 1999. Lung epithelium-specific proteins: Characteristics and potential applications as markers. American Journal of Respiratory and Critical Care Medicine 159: 646–678.PubMed Hermans, C., and A. Bernard. 1999. Lung epithelium-specific proteins: Characteristics and potential applications as markers. American Journal of Respiratory and Critical Care Medicine 159: 646–678.PubMed
13.
go back to reference Balis, J.U., J.F. Paterson, J.E. Paciga, E.M. Haller, and S.A. Shelley. 1985. Distribution and subcellular localization of surfactant-associated glycoproteins in human lung. Laboratory Investigation 52: 657–669.PubMed Balis, J.U., J.F. Paterson, J.E. Paciga, E.M. Haller, and S.A. Shelley. 1985. Distribution and subcellular localization of surfactant-associated glycoproteins in human lung. Laboratory Investigation 52: 657–669.PubMed
14.
go back to reference Crouch, E., D. Parghi, S.F. Kuan, and A. Persson. 1992. Surfactant protein D: subcellular localization in nonciliated bronchiolar epithelial cells. American Journal of Physiology 263: L60–L66.PubMed Crouch, E., D. Parghi, S.F. Kuan, and A. Persson. 1992. Surfactant protein D: subcellular localization in nonciliated bronchiolar epithelial cells. American Journal of Physiology 263: L60–L66.PubMed
15.
go back to reference Phelps, D.S., and J. Floros. 1988. Localization of surfactant protein synthesis in human lung by in situ hybridization. American Review of Respiratory Disease 137: 939–942.PubMed Phelps, D.S., and J. Floros. 1988. Localization of surfactant protein synthesis in human lung by in situ hybridization. American Review of Respiratory Disease 137: 939–942.PubMed
16.
go back to reference Shan, L., T. Kawakami, S. Asano, S. Noritake, D. Yoshimoto, K. Yamashita, H. Kikkawa, M. Kinoshita, and S. Matsubara. 2009. Inverse relationship between Sec14l3 mRNA/protein expression and allergic airway inflammation. European Journal of Pharmacology 616: 293–300.PubMedCrossRef Shan, L., T. Kawakami, S. Asano, S. Noritake, D. Yoshimoto, K. Yamashita, H. Kikkawa, M. Kinoshita, and S. Matsubara. 2009. Inverse relationship between Sec14l3 mRNA/protein expression and allergic airway inflammation. European Journal of Pharmacology 616: 293–300.PubMedCrossRef
17.
go back to reference Merkulova, M.I., S.G. Andreeva, T.M. Shuvaeva, S.V. Novoselov, I.V. Peshenko, M.F. Bystrova, V.I. Novoselov, E.E. Fesenko, and V.M. Lipkin. 1999. A novel 45 kDa secretory protein from rat olfactory epithelium: primary structure and localisation. FEBS Letters 450: 126–130.PubMedCrossRef Merkulova, M.I., S.G. Andreeva, T.M. Shuvaeva, S.V. Novoselov, I.V. Peshenko, M.F. Bystrova, V.I. Novoselov, E.E. Fesenko, and V.M. Lipkin. 1999. A novel 45 kDa secretory protein from rat olfactory epithelium: primary structure and localisation. FEBS Letters 450: 126–130.PubMedCrossRef
18.
go back to reference Novoselov, V.I., I.V. Peshenko, V.A. Evdokimov, J.V. Nikolaev, E.A. Matveeva, and E.E. Fesenko. 1996. 45-kDa GTP-binding protein from rat olfactory epithelium: Purification, characterization and localization. Chemical Senses 21: 181–188.PubMedCrossRef Novoselov, V.I., I.V. Peshenko, V.A. Evdokimov, J.V. Nikolaev, E.A. Matveeva, and E.E. Fesenko. 1996. 45-kDa GTP-binding protein from rat olfactory epithelium: Purification, characterization and localization. Chemical Senses 21: 181–188.PubMedCrossRef
19.
go back to reference Wilson, R., E. Alton, A. Rutman, P. Higgins, W. Al Nakib, D.M. Geddes, D.A. Tyrrell, and P.J. Cole. 1987. Upper respiratory tract viral infection and mucociliary clearance. European Journal of Respiratory Diseases 70: 272–279.PubMed Wilson, R., E. Alton, A. Rutman, P. Higgins, W. Al Nakib, D.M. Geddes, D.A. Tyrrell, and P.J. Cole. 1987. Upper respiratory tract viral infection and mucociliary clearance. European Journal of Respiratory Diseases 70: 272–279.PubMed
20.
go back to reference O'Niell, F.D., C.J. Issel, and W.G. Henk. 1984. Electron microscopy of equine respiratory viruses in organ cultures of equine fetal respiratory tract epithelium. American Journal of Veterinary Research 45: 1953–1960.PubMed O'Niell, F.D., C.J. Issel, and W.G. Henk. 1984. Electron microscopy of equine respiratory viruses in organ cultures of equine fetal respiratory tract epithelium. American Journal of Veterinary Research 45: 1953–1960.PubMed
21.
go back to reference Noguchi, Y., Y. Uchida, T. Endo, H. Ninomiya, A. Nomura, T. Sakamoto, Y. Goto, S. Haraoka, T. Shimokama, T. Watanabe, and S. Hasegawa. 1995. The induction of cell differentiation and polarity of tracheal epithelium cultured on the amniotic membrane. Biochemical and Biophysical Research Communications 210: 302–309.PubMedCrossRef Noguchi, Y., Y. Uchida, T. Endo, H. Ninomiya, A. Nomura, T. Sakamoto, Y. Goto, S. Haraoka, T. Shimokama, T. Watanabe, and S. Hasegawa. 1995. The induction of cell differentiation and polarity of tracheal epithelium cultured on the amniotic membrane. Biochemical and Biophysical Research Communications 210: 302–309.PubMedCrossRef
22.
go back to reference Goto, Y., Y. Noguchi, A. Nomura, T. Sakamoto, Y. Ishii, S. Bitoh, C. Picton, Y. Fujita, T. Watanabe, S. Hasegawa, and Y. Uchida. 1999. In vitro reconstitution of the tracheal epithelium. American Journal of Respiratory Cell and Molecular Biology 20: 312–318.PubMed Goto, Y., Y. Noguchi, A. Nomura, T. Sakamoto, Y. Ishii, S. Bitoh, C. Picton, Y. Fujita, T. Watanabe, S. Hasegawa, and Y. Uchida. 1999. In vitro reconstitution of the tracheal epithelium. American Journal of Respiratory Cell and Molecular Biology 20: 312–318.PubMed
23.
go back to reference Heid, C.A., J. Stevens, K.J. Livak, and P.M. Williams. 1996. Real time quantitative PCR. Genome Research 6: 986–994.PubMedCrossRef Heid, C.A., J. Stevens, K.J. Livak, and P.M. Williams. 1996. Real time quantitative PCR. Genome Research 6: 986–994.PubMedCrossRef
24.
go back to reference Sugihara, H., S. Toda, S. Miyabara, C. Fujiyama, and N. Yonemitsu. 1993. Reconstruction of alveolus-like structure from alveolar type II epithelial cells in three-dimensional collagen gel matrix culture. The American Journal of Pathology 142: 783–792.PubMed Sugihara, H., S. Toda, S. Miyabara, C. Fujiyama, and N. Yonemitsu. 1993. Reconstruction of alveolus-like structure from alveolar type II epithelial cells in three-dimensional collagen gel matrix culture. The American Journal of Pathology 142: 783–792.PubMed
25.
go back to reference Ibricevic, A., A. Pekosz, M.J. Walter, C. Newby, J.T. Battaile, E.G. Brown, M.J. Holtzman, and S.L. Brody. 2006. Influenza virus receptor specificity and cell tropism in mouse and human airway epithelial cells. Journal of Virology 80: 7469–7480.PubMedCrossRef Ibricevic, A., A. Pekosz, M.J. Walter, C. Newby, J.T. Battaile, E.G. Brown, M.J. Holtzman, and S.L. Brody. 2006. Influenza virus receptor specificity and cell tropism in mouse and human airway epithelial cells. Journal of Virology 80: 7469–7480.PubMedCrossRef
26.
go back to reference Merkulova, M., H. Huynh, V. Radchenko, K. Saito, V. Lipkin, T. Shuvaeva, and T. Mustelin. 2005. Secretion of the mammalian Sec14p-like phosphoinositide-binding p45 protein. The FEBS Journal 272: 5595–5605.PubMedCrossRef Merkulova, M., H. Huynh, V. Radchenko, K. Saito, V. Lipkin, T. Shuvaeva, and T. Mustelin. 2005. Secretion of the mammalian Sec14p-like phosphoinositide-binding p45 protein. The FEBS Journal 272: 5595–5605.PubMedCrossRef
27.
go back to reference Proud, D., R.B. Turner, B. Winther, S. Wiehler, J.P. Tiesman, T.D. Reichling, K.D. Juhlin, A.W. Fulmer, B.Y. Ho, A.A. Walanski, C.L. Poore, H. Mizoguchi, L. Jump, M.L. Moore, C.K. Zukowski, and J.W. Clymer. 2008. Gene expression profiles during in vivo human rhinovirus infection: Insights into the host response. American Journal of Respiratory and Critical Care Medicine 178: 962–968.PubMedCrossRef Proud, D., R.B. Turner, B. Winther, S. Wiehler, J.P. Tiesman, T.D. Reichling, K.D. Juhlin, A.W. Fulmer, B.Y. Ho, A.A. Walanski, C.L. Poore, H. Mizoguchi, L. Jump, M.L. Moore, C.K. Zukowski, and J.W. Clymer. 2008. Gene expression profiles during in vivo human rhinovirus infection: Insights into the host response. American Journal of Respiratory and Critical Care Medicine 178: 962–968.PubMedCrossRef
28.
go back to reference Zhang, X., P. Sebastiani, G. Liu, F. Schembri, Y.M. Dumas, E.M. Langer, Y. Alekseyev, G.T. O'Connor, D.R. Brooks, M.E. Lenburg, and A. Spira. 2010. Similarities and differences between smoking-related gene expression in nasal and bronchial epithelium. Physiological Genomics 41: 1–8.PubMedCrossRef Zhang, X., P. Sebastiani, G. Liu, F. Schembri, Y.M. Dumas, E.M. Langer, Y. Alekseyev, G.T. O'Connor, D.R. Brooks, M.E. Lenburg, and A. Spira. 2010. Similarities and differences between smoking-related gene expression in nasal and bronchial epithelium. Physiological Genomics 41: 1–8.PubMedCrossRef
29.
go back to reference Strulovici-Barel, Y., L. Omberg, M. O'Mahony, C. Gordon, C. Hollmann, A.E. Tilley, J. Salit, J. Mezey, B.G. Harvey, and R.G. Crystal. 2010. Threshold of biologic responses of the small airway epithelium to low levels of tobacco smoke. American Journal of Respiratory and Critical Care Medicine 182: 1524–1532.PubMedCrossRef Strulovici-Barel, Y., L. Omberg, M. O'Mahony, C. Gordon, C. Hollmann, A.E. Tilley, J. Salit, J. Mezey, B.G. Harvey, and R.G. Crystal. 2010. Threshold of biologic responses of the small airway epithelium to low levels of tobacco smoke. American Journal of Respiratory and Critical Care Medicine 182: 1524–1532.PubMedCrossRef
30.
go back to reference Carvalho-Oliveira, I.M., N. Charro, J. Aarbiou, R.M. Buijs-Offerman, M. Wilke, T. Schettgen, T. Kraus, M.K. Titulaer, P. Burgers, T.M. Luider, D. Penque, and B.J. Scholte. 2009. Proteomic analysis of naphthalene-induced airway epithelial injury and repair in a cystic fibrosis mouse model. Journal of Proteome Research 8: 3606–3616.PubMedCrossRef Carvalho-Oliveira, I.M., N. Charro, J. Aarbiou, R.M. Buijs-Offerman, M. Wilke, T. Schettgen, T. Kraus, M.K. Titulaer, P. Burgers, T.M. Luider, D. Penque, and B.J. Scholte. 2009. Proteomic analysis of naphthalene-induced airway epithelial injury and repair in a cystic fibrosis mouse model. Journal of Proteome Research 8: 3606–3616.PubMedCrossRef
31.
go back to reference Haque, R., T.M. Umstead, W.M. Freeman, J. Floros, and D.S. Phelps. 2009. The impact of surfactant protein-A on ozone-induced changes in the mouse bronchoalveolar lavage proteome. Proteome Science 7: 12.PubMedCrossRef Haque, R., T.M. Umstead, W.M. Freeman, J. Floros, and D.S. Phelps. 2009. The impact of surfactant protein-A on ozone-induced changes in the mouse bronchoalveolar lavage proteome. Proteome Science 7: 12.PubMedCrossRef
32.
go back to reference Ali, M., T.M. Umstead, R. Haque, A.N. Mikerov, W.M. Freeman, J. Floros, and D.S. Phelps. 2010. Differences in the BAL proteome after Klebsiella pneumoniae infection in wild type and SP-A−/− mice. Proteome Science 8: 34.PubMedCrossRef Ali, M., T.M. Umstead, R. Haque, A.N. Mikerov, W.M. Freeman, J. Floros, and D.S. Phelps. 2010. Differences in the BAL proteome after Klebsiella pneumoniae infection in wild type and SP-A−/− mice. Proteome Science 8: 34.PubMedCrossRef
33.
go back to reference Lv, M., Y. B. Fan, Y. J. Zhao, T. Y. Wang, and G. P. Wu (2011). Expression and clinical significance of glucose transporter 1 mRNA in bronchial brushing liquid-based cytology specimens from patients with and without lung cancer. Cytopathology. in press. Lv, M., Y. B. Fan, Y. J. Zhao, T. Y. Wang, and G. P. Wu (2011). Expression and clinical significance of glucose transporter 1 mRNA in bronchial brushing liquid-based cytology specimens from patients with and without lung cancer. Cytopathology. in press.
34.
go back to reference Wark, P.A., T. Grissell, B. Davies, H. See, and P.G. Gibson. 2009. Diversity in the bronchial epithelial cell response to infection with different rhinovirus strains. Respirology 14: 180–186.PubMedCrossRef Wark, P.A., T. Grissell, B. Davies, H. See, and P.G. Gibson. 2009. Diversity in the bronchial epithelial cell response to infection with different rhinovirus strains. Respirology 14: 180–186.PubMedCrossRef
35.
go back to reference Harvey, B.G., A. Heguy, P.L. Leopold, B.J. Carolan, B. Ferris, and R.G. Crystal. 2007. Modification of gene expression of the small airway epithelium in response to cigarette smoking. Journal of Molecular Medicine 85: 39–53.PubMedCrossRef Harvey, B.G., A. Heguy, P.L. Leopold, B.J. Carolan, B. Ferris, and R.G. Crystal. 2007. Modification of gene expression of the small airway epithelium in response to cigarette smoking. Journal of Molecular Medicine 85: 39–53.PubMedCrossRef
36.
go back to reference Mousley, C.J., K.R. Tyeryar, P. Vincent-Pope, and V.A. Bankaitis. 2007. The Sec14-superfamily and the regulatory interface between phospholipid metabolism and membrane trafficking. Biochimica et Biophysica Acta 1771: 727–736.PubMed Mousley, C.J., K.R. Tyeryar, P. Vincent-Pope, and V.A. Bankaitis. 2007. The Sec14-superfamily and the regulatory interface between phospholipid metabolism and membrane trafficking. Biochimica et Biophysica Acta 1771: 727–736.PubMed
37.
go back to reference Bankaitis, V.A., C.J. Mousley, and G. Schaaf. 2010. The Sec14 superfamily and mechanisms for crosstalk between lipid metabolism and lipid signaling. Trends in Biochemical Sciences 35: 150–160.PubMedCrossRef Bankaitis, V.A., C.J. Mousley, and G. Schaaf. 2010. The Sec14 superfamily and mechanisms for crosstalk between lipid metabolism and lipid signaling. Trends in Biochemical Sciences 35: 150–160.PubMedCrossRef
38.
go back to reference Saito, K., L. Tautz, and T. Mustelin. 2007. The lipid-binding SEC14 domain. Biochimica et Biophysica Acta 1771: 719–726.PubMed Saito, K., L. Tautz, and T. Mustelin. 2007. The lipid-binding SEC14 domain. Biochimica et Biophysica Acta 1771: 719–726.PubMed
39.
go back to reference Huijbregts, R.P., L. Topalof, and V.A. Bankaitis. 2000. Lipid metabolism and regulation of membrane trafficking. Traffic 1: 195–202.PubMedCrossRef Huijbregts, R.P., L. Topalof, and V.A. Bankaitis. 2000. Lipid metabolism and regulation of membrane trafficking. Traffic 1: 195–202.PubMedCrossRef
40.
go back to reference Kempna, P., R. Ricciarelli, A. Azzi, and J.M. Zingg. 2010. Alternative splicing and gene polymorphism of the human TAP3/SEC14L4 gene. Molecular Biology Reports 37: 3503–3508.PubMedCrossRef Kempna, P., R. Ricciarelli, A. Azzi, and J.M. Zingg. 2010. Alternative splicing and gene polymorphism of the human TAP3/SEC14L4 gene. Molecular Biology Reports 37: 3503–3508.PubMedCrossRef
41.
go back to reference Kempná, P., J.M. Zingg, R. Ricciarelli, M. Hierl, S. Saxena, and A. Azzi. 2003. Cloning of novel human SEC14p-like proteins: Ligand binding and functional properties. Free Radical Biology & Medicine 34: 1458–1472.CrossRef Kempná, P., J.M. Zingg, R. Ricciarelli, M. Hierl, S. Saxena, and A. Azzi. 2003. Cloning of novel human SEC14p-like proteins: Ligand binding and functional properties. Free Radical Biology & Medicine 34: 1458–1472.CrossRef
42.
go back to reference Zingg, J.M., P. Kempna, M. Paris, E. Reiter, L. Villacorta, R. Cipollone, A. Munteanu, C. De Pascale, S. Menini, A. Cueff, M. Arock, A. Azzi, and R. Ricciarelli. 2008. Characterization of three human sec14p-like proteins: α-Tocopherol transport activity and expression pattern in tissues. Biochimie 90: 1703–1715.PubMedCrossRef Zingg, J.M., P. Kempna, M. Paris, E. Reiter, L. Villacorta, R. Cipollone, A. Munteanu, C. De Pascale, S. Menini, A. Cueff, M. Arock, A. Azzi, and R. Ricciarelli. 2008. Characterization of three human sec14p-like proteins: α-Tocopherol transport activity and expression pattern in tissues. Biochimie 90: 1703–1715.PubMedCrossRef
43.
go back to reference Zhang, L., A. Bukreyev, C.I. Thompson, B. Watson, M.E. Peeples, P.L. Collins, and R.J. Pickles. 2005. Infection of ciliated cells by human parainfluenza virus type 3 in an in vitro model of human airway epithelium. Journal of Virology 79: 1113–1124.PubMedCrossRef Zhang, L., A. Bukreyev, C.I. Thompson, B. Watson, M.E. Peeples, P.L. Collins, and R.J. Pickles. 2005. Infection of ciliated cells by human parainfluenza virus type 3 in an in vitro model of human airway epithelium. Journal of Virology 79: 1113–1124.PubMedCrossRef
45.
go back to reference Inglis, P.N., K.A. Boroevich, and M.R. Leroux. 2006. Piecing together a ciliome. Trends in Genetics 22: 491–500.PubMedCrossRef Inglis, P.N., K.A. Boroevich, and M.R. Leroux. 2006. Piecing together a ciliome. Trends in Genetics 22: 491–500.PubMedCrossRef
Metadata
Title
Sec14l3 Is Specifically Expressed in Mouse Airway Ciliated Cells
Authors
Lihua Shan
Shinobu Noritake
Masatoshi Fujiwara
Satoshi Asano
Chikako Yoshida-Noro
Nobuhiro Noro
Keizo Yamashita
Takao Kawakami
Publication date
01-04-2012
Publisher
Springer US
Published in
Inflammation / Issue 2/2012
Print ISSN: 0360-3997
Electronic ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-011-9363-z

Other articles of this Issue 2/2012

Inflammation 2/2012 Go to the issue