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IV型胶原蛋白中的交联

Cross-linking in type IV collagen.

作者信息

Bailey A J, Sims T J, Light N

出版信息

Biochem J. 1984 Mar 15;218(3):713-23. doi: 10.1042/bj2180713.

Abstract

Type IV collagen could not be extracted from human placenta using 6M-urea containing 10mM-dithiothreitol, indicating that the type IV molecule is stabilized within the basement membrane by covalent cross-links. However, various forms of type IV collagen molecule were extractable by means of increasingly severe proteolytic conditions. Type IV collagen tetramers ('spiders') lacking only the C-terminal globular region (NC1) were further digested to the 'long-form' 7S fragment and an assortment of helical rod-like molecules derived from the 'leg' region. These molecules were separated by salt fractionation and examined by rotary-shadowing electron microscopy. Isolation of these fractions from placenta which had been reduced with NaB3H4 revealed that both the 7S (N-terminal) and C-terminal regions contained significant proportions of reducible lysine-derived cross-links. These cross-links were shown to be exclusively the stable oxo-imine hydroxylysino-5-oxonorleucine. The number of the cross-links per molecule was significantly lower than might be expected in order to fully stabilize the molecule. These results suggest that the keto-imine cross-links in type IV collagen have been stabilized in part by conversion into an unknown non-reducible form, although a sensitive immunoassay failed to show the presence of any pyridinoline. Comparison with the fibrous collagen from placenta suggested that the rate of this conversion is much greater in basement-membrane collagen.

摘要

使用含有10mM二硫苏糖醇的6M尿素无法从人胎盘中提取IV型胶原,这表明IV型分子通过共价交联在基底膜内得以稳定。然而,通过越来越剧烈的蛋白水解条件可提取出各种形式的IV型胶原分子。仅缺少C末端球状区域(NC1)的IV型胶原四聚体(“蜘蛛”)进一步被消化成“长形”7S片段和一系列源自“腿部”区域的螺旋棒状分子。这些分子通过盐分级分离,并通过旋转阴影电子显微镜进行检查。从用NaB3H4还原的胎盘中分离出这些组分,结果显示7S(N末端)和C末端区域均含有相当比例的可还原赖氨酸衍生交联。这些交联被证明完全是稳定的氧代亚胺羟赖氨酰-5-氧代正亮氨酸。每个分子的交联数量明显低于为使分子完全稳定所预期的数量。这些结果表明,IV型胶原中的酮亚胺交联部分已通过转化为未知的不可还原形式而得以稳定,尽管灵敏的免疫测定未能显示任何吡啶啉的存在。与来自胎盘的纤维状胶原相比,表明这种转化在基底膜胶原中的速率要大得多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a52d/1153399/aff358690810/biochemj00331-0067-a.jpg

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