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ชื่อเรื่อง: | Glycosylation and cross-linking in bone type I collagen |
ผู้แต่ง: | Terajima M. Perdivara I. Sricholpech M. Deguchi Y. Pleshko N. Tomer K.B. Yamauchi M. |
Keywords: | Bone Collagen Esterification Liquid chromatography Mineralogy Biological functions Biological significance Fibrillar collagens Intermolecular crosslinking Mono- and disaccharides Organic components Tandem mass spectrometric analysis Type II collagens Glycosylation collagen type 1 collagen type 2 disaccharide hydroxylysine lysyl hydroxylase 3 monosaccharide oxygenase unclassified drug collagen type 1 hydroxylysine animal tissue article bone enzyme activity glycosylation liquid chromatography nonhuman priority journal protein cross linking protein glycosylation protein structure tandem mass spectrometry animal bone Bovinae chemistry mass spectrometry protein stability Animals Bone and Bones Cattle Chromatography, Liquid Collagen Type I Glycosylation Hydroxylysine Mass Spectrometry Protein Stability |
วันที่เผยแพร่: | 2014 |
บทคัดย่อ: | Fibrillar type I collagen is the major organic component in bone, providing a stable template for mineralization. During collagen biosynthesis, specific hydroxylysine residues become glycosylated in the form of galactosyl- and glucosylgalactosyl-hydroxylysine. Furthermore, key glycosylated hydroxylysine residues, α1/2-87, are involved in covalent intermolecular cross-linking. Although cross-linking is crucial for the stability and mineralization of collagen, the biological function of glycosylation in cross-linking is not well understood. In this study, we quantitatively characterized glycosylation of non-cross-linked and cross-linked peptides by biochemical and nanoscale liquid chromatography-high resolution tandem mass spectrometric analyses. The results showed that glycosylation of non-cross-linked hydroxylysine is different from that involved in cross-linking. Among the cross-linked species involving α1/2-87, divalent cross-links were glycosylated with both mono- and disaccharides, whereas the mature, trivalent cross-links were primarily monoglycosylated. Markedly diminished diglycosylation in trivalent cross-links at this locus was also confirmed in type II collagen. The data, together with our recent report (Sricholpech, M., Perdivara, I., Yokoyama, M., Nagaoka, H., Terajima, M., Tomer, K. B., and Yamauchi, M. (2012) Lysyl hydroxylase 3-mediated glucosylation in type I collagen: molecular loci and biological significance. J. Biol. Chem. 287, 22998-23009), indicate that the extent and pattern of glycosylation may regulate cross-link maturation in fibrillar collagen. |
URI: | https://ir.swu.ac.th/jspui/handle/123456789/13911 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84905994030&doi=10.1074%2fjbc.M113.528513&partnerID=40&md5=c63ae3a665cd08eb47e3436be143afff |
ISSN: | 219258 |
Appears in Collections: | Scopus 1983-2021 |
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