Skip to main content
Top
Published in: International Ophthalmology 6/2013

01-12-2013 | Case Report

Immunohistochemical expression and distribution of proteoglycans and collagens in sclerocornea

Authors: Rachida Bouhenni, Michael Hart, Sabah Al-Jastaneiah, Hind AlKatan, Deepak P. Edward

Published in: International Ophthalmology | Issue 6/2013

Login to get access

Abstract

To immunolocalize corneal keratan sulfate (KS) and its core protein lumican, aggrecan, type I and type III collagens in sclerocornea specimens and compare their expression and distribution to age-matched healthy corneas and scleras. Sclerocornea specimens (n = 3) and age-matched normal corneoscleral rim specimens (n = 3) were studied by light microscopy and histochemically. KS, lumican, aggrecan, type I and type III collagens were immunolocalized in the specimens using indirect immunofluorescence. The fluorescence intensity in each specimen was scored from 0 to 4, with 0 representing no fluorescence and 4 representing intense fluorescence. The sclerocornea specimens showed histologic features typical of sclerocornea. KS and lumican immunolabeling in the corneal stroma in sclerocornea was decreased, whereas aggrecan immunolabeling was increased compared to that seen in normal cornea and normal sclera. KS and lumican staining was more intense in the posterior part of sclerocornea specimens, whereas aggrecan staining was distributed throughout the stroma. The staining intensity and distribution of type I collagen in sclerocornea was similar to that seen in normal cornea. Type III collagen was faint to absent in both normal cornea and sclerocornea but strong labeling was noted in normal sclera. The immunophenotype of sclerocornea is similar to that of normal cornea but with reduced labeling intensity of KS and lumican and increased labeling intensity of aggrecan. This change could potentially contribute to the abnormal fibril assembly in sclerocornea.
Literature
1.
go back to reference Elliott JH, Feman SS, O’Day DM, Garber M (1985) Hereditary sclerocornea. Arch Ophthalmol 103(5):676–679PubMedCrossRef Elliott JH, Feman SS, O’Day DM, Garber M (1985) Hereditary sclerocornea. Arch Ophthalmol 103(5):676–679PubMedCrossRef
2.
4.
go back to reference Maurice DM (1984) The cornea and sclera. Academic Press, Orlando, pp 1–158 Maurice DM (1984) The cornea and sclera. Academic Press, Orlando, pp 1–158
6.
go back to reference Thale A, Tillmann B (1993) The collagen architecture of the sclera—SEM and immunohistochemical studies. Ann Anat 175(3):215–220PubMedCrossRef Thale A, Tillmann B (1993) The collagen architecture of the sclera—SEM and immunohistochemical studies. Ann Anat 175(3):215–220PubMedCrossRef
7.
go back to reference Rada JA, Achen VR, Perry CA, Fox PW (1997) Proteoglycans in the human sclera. Evidence for the presence of aggrecan. Invest Ophthalmol Vis Sci 38(9):1740–1751PubMed Rada JA, Achen VR, Perry CA, Fox PW (1997) Proteoglycans in the human sclera. Evidence for the presence of aggrecan. Invest Ophthalmol Vis Sci 38(9):1740–1751PubMed
8.
go back to reference Austin BA, Coulon C, Liu CY, Kao WW, Rada JA (2002) Altered collagen fibril formation in the sclera of lumican-deficient mice. Invest Ophthalmol Vis Sci 43(6):1695–1701PubMed Austin BA, Coulon C, Liu CY, Kao WW, Rada JA (2002) Altered collagen fibril formation in the sclera of lumican-deficient mice. Invest Ophthalmol Vis Sci 43(6):1695–1701PubMed
10.
go back to reference Chakravarti S, Paul J, Roberts L, Chervoneva I, Oldberg A, Birk DE (2003) Ocular and scleral alterations in gene-targeted lumican-fibromodulin double-null mice. Invest Ophthalmol Vis Sci 44(6):2422–2432PubMedCrossRef Chakravarti S, Paul J, Roberts L, Chervoneva I, Oldberg A, Birk DE (2003) Ocular and scleral alterations in gene-targeted lumican-fibromodulin double-null mice. Invest Ophthalmol Vis Sci 44(6):2422–2432PubMedCrossRef
12.
go back to reference Kurpakus Wheater M, Kernacki KA, Hazlett LD (1999) Corneal cell proteins and ocular surface pathology. Biotech Histochem 74(3):146–159PubMedCrossRef Kurpakus Wheater M, Kernacki KA, Hazlett LD (1999) Corneal cell proteins and ocular surface pathology. Biotech Histochem 74(3):146–159PubMedCrossRef
13.
go back to reference Hassell JR, Newsome DA, Krachmer JH, Rodrigues MM (1980) Macular corneal dystrophy: failure to synthesize a mature keratan sulfate proteoglycan. Proc Natl Acad Sci USA 77(6):3705–3709PubMedCrossRef Hassell JR, Newsome DA, Krachmer JH, Rodrigues MM (1980) Macular corneal dystrophy: failure to synthesize a mature keratan sulfate proteoglycan. Proc Natl Acad Sci USA 77(6):3705–3709PubMedCrossRef
14.
go back to reference Funderburgh JL, Funderburgh ML, Mann MM, Conrad GW (1991) Physical and biological properties of keratan sulphate proteoglycan. Biochem Soc Trans 19(4):871–876PubMed Funderburgh JL, Funderburgh ML, Mann MM, Conrad GW (1991) Physical and biological properties of keratan sulphate proteoglycan. Biochem Soc Trans 19(4):871–876PubMed
15.
go back to reference Kanai A, Wood TC, Polack FM, Kaufman HE (1971) The fine structure of sclerocornea. Invest Ophthalmol 10(9):687–694PubMed Kanai A, Wood TC, Polack FM, Kaufman HE (1971) The fine structure of sclerocornea. Invest Ophthalmol 10(9):687–694PubMed
16.
go back to reference Wood TO, Kaufman HE (1970) Penetrating keratoplasty in an infant with sclerocornea. Am J Ophthalmol 70(4):609–613PubMed Wood TO, Kaufman HE (1970) Penetrating keratoplasty in an infant with sclerocornea. Am J Ophthalmol 70(4):609–613PubMed
17.
go back to reference Blochberger TC, Vergnes JP, Hempel J, Hassell JR (1992) cDNA to chick lumican (corneal keratan sulfate proteoglycan) reveals homology to the small interstitial proteoglycan gene family and expression in muscle and intestine. J Biol Chem 267(1):347–352PubMed Blochberger TC, Vergnes JP, Hempel J, Hassell JR (1992) cDNA to chick lumican (corneal keratan sulfate proteoglycan) reveals homology to the small interstitial proteoglycan gene family and expression in muscle and intestine. J Biol Chem 267(1):347–352PubMed
18.
go back to reference Ezura Y, Chakravarti S, Oldberg A, Chervoneva I, Birk DE (2000) Differential expression of lumican and fibromodulin regulate collagen fibrillogenesis in developing mouse tendons. J Cell Biol 151(4):779–788PubMedCrossRef Ezura Y, Chakravarti S, Oldberg A, Chervoneva I, Birk DE (2000) Differential expression of lumican and fibromodulin regulate collagen fibrillogenesis in developing mouse tendons. J Cell Biol 151(4):779–788PubMedCrossRef
19.
go back to reference Chakravarti S, Magnuson T, Lass JH, Jepsen KJ, LaMantia C, Carroll H (1998) Lumican regulates collagen fibril assembly: skin fragility and corneal opacity in the absence of lumican. J Cell Biol 141(5):1277–1286PubMedCrossRef Chakravarti S, Magnuson T, Lass JH, Jepsen KJ, LaMantia C, Carroll H (1998) Lumican regulates collagen fibril assembly: skin fragility and corneal opacity in the absence of lumican. J Cell Biol 141(5):1277–1286PubMedCrossRef
20.
go back to reference Funderburgh JL, Funderburgh ML, Mann MM, Conrad GW (1991) Arterial lumican properties of a corneal-type keratan sulfate proteoglycan from bovine aorta. J Biol Chem 266(36):24773–24777PubMed Funderburgh JL, Funderburgh ML, Mann MM, Conrad GW (1991) Arterial lumican properties of a corneal-type keratan sulfate proteoglycan from bovine aorta. J Biol Chem 266(36):24773–24777PubMed
21.
go back to reference Grover J, Chen XN, Korenberg JR, Roughley PJ (1995) The human lumican gene organization, chromosomal location, and expression in articular cartilage. J Biol Chem 270(37):21942–21949PubMedCrossRef Grover J, Chen XN, Korenberg JR, Roughley PJ (1995) The human lumican gene organization, chromosomal location, and expression in articular cartilage. J Biol Chem 270(37):21942–21949PubMedCrossRef
22.
go back to reference Krull NB, Gressner AM (1992) Differential expression of keratan sulphate proteoglycans fibromodulin, lumican and aggrecan in normal and fibrotic rat liver. FEBS Lett 312(1):47–52. doi:0014-5793(92)81407-D PubMedCrossRef Krull NB, Gressner AM (1992) Differential expression of keratan sulphate proteoglycans fibromodulin, lumican and aggrecan in normal and fibrotic rat liver. FEBS Lett 312(1):47–52. doi:0014-5793(92)81407-D PubMedCrossRef
23.
go back to reference Chakravarti S, Petroll WM, Hassell JR, Jester JV, Lass JH, Paul J, Birk DE (2000) Corneal opacity in lumican-null mice: defects in collagen fibril structure and packing in the posterior stroma. Invest Ophthalmol Vis Sci 41(11):3365–3373PubMed Chakravarti S, Petroll WM, Hassell JR, Jester JV, Lass JH, Paul J, Birk DE (2000) Corneal opacity in lumican-null mice: defects in collagen fibril structure and packing in the posterior stroma. Invest Ophthalmol Vis Sci 41(11):3365–3373PubMed
26.
go back to reference Sandy JD, Flannery CR, Neame PJ, Lohmander LS (1992) The structure of aggrecan fragments in human synovial fluid evidence for the involvement in osteoarthritis of a novel proteinase which cleaves the Glu 373–Ala 374 bond of the interglobular domain. J Clin Invest 89(5):1512–1516. doi:10.1172/JCI115742 PubMedCrossRef Sandy JD, Flannery CR, Neame PJ, Lohmander LS (1992) The structure of aggrecan fragments in human synovial fluid evidence for the involvement in osteoarthritis of a novel proteinase which cleaves the Glu 373–Ala 374 bond of the interglobular domain. J Clin Invest 89(5):1512–1516. doi:10.​1172/​JCI115742 PubMedCrossRef
29.
go back to reference Wells T, Davidson C, Morgelin M, Bird JL, Bayliss MT, Dudhia J (2003) Age-related changes in the composition, the molecular stoichiometry and the stability of proteoglycan aggregates extracted from human articular cartilage. Biochem J 370(Pt 1):69–79. doi:10.1042/BJ20020968 PubMedCrossRef Wells T, Davidson C, Morgelin M, Bird JL, Bayliss MT, Dudhia J (2003) Age-related changes in the composition, the molecular stoichiometry and the stability of proteoglycan aggregates extracted from human articular cartilage. Biochem J 370(Pt 1):69–79. doi:10.​1042/​BJ20020968 PubMedCrossRef
30.
go back to reference Bayliss MT (1990) Proteoglycan structure and metabolism during maturation and ageing of human articular cartilage. Biochem Soc Trans 18(5):799–802PubMed Bayliss MT (1990) Proteoglycan structure and metabolism during maturation and ageing of human articular cartilage. Biochem Soc Trans 18(5):799–802PubMed
31.
go back to reference Rada JA, Achen VR, Penugonda S, Schmidt RW, Mount BA (2000) Proteoglycan composition in the human sclera during growth and aging. Invest Ophthalmol Vis Sci 41(7):1639–1648PubMed Rada JA, Achen VR, Penugonda S, Schmidt RW, Mount BA (2000) Proteoglycan composition in the human sclera during growth and aging. Invest Ophthalmol Vis Sci 41(7):1639–1648PubMed
Metadata
Title
Immunohistochemical expression and distribution of proteoglycans and collagens in sclerocornea
Authors
Rachida Bouhenni
Michael Hart
Sabah Al-Jastaneiah
Hind AlKatan
Deepak P. Edward
Publication date
01-12-2013
Publisher
Springer Netherlands
Published in
International Ophthalmology / Issue 6/2013
Print ISSN: 0165-5701
Electronic ISSN: 1573-2630
DOI
https://doi.org/10.1007/s10792-012-9710-6

Other articles of this Issue 6/2013

International Ophthalmology 6/2013 Go to the issue