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基于对该区域α1和α2链一级结构的评估构建IV型胶原聚集和交联区域(7S结构域)的模型。

Construction of a model for the aggregation and cross-linking region (7S domain) of type IV collagen based upon an evaluation of the primary structure of the alpha 1 and alpha 2 chains in this region.

作者信息

Siebold B, Qian R A, Glanville R W, Hofmann H, Deutzmann R, Kühn K

机构信息

Max-Planck-Institut für Biochemie, Martinsried bei München, Federal Republic of Germany.

出版信息

Eur J Biochem. 1987 Nov 2;168(3):569-75. doi: 10.1111/j.1432-1033.1987.tb13455.x.

Abstract

The amino acid sequence of the 212-residues-long N-terminal aggregation and cross-linking region of the alpha 2(IV) chain of human basement membrane collagen is presented. Comparing this with the primary structure of alpha 1(IV)7S [Glanville et al. (1985) Eur. J. Biochem. 152, 213-219] revealed a high degree of similar subdivisions in three functional regions. These are the 21-residue-long N-terminal non-triple-helical regions (NH1) containing cysteine and lysine residues which are putative cross-linking sites, a 117-residue-long triple-helical region (TH1) responsible for the aggregation of four molecules to form the 7S domain and which also possess cross-linking sites, and finally a 10-residue-long non-triple-helical region (NH2) which introduces the first of many flexible areas into the triple helical body of the molecule [Hofmann et al. (1984) J. Mol. Biol. 172, 325-343]. Computer calculations of interaction scores between parallel and antiparallelly aligned triple-helical regions (TH1) of the 7S domain allowed the prediction of a detailed model for the structure of the 7S complex which agreed well with models based primarily on electron micrographs of rotary shadowed type IV collagen tetramers. The results indicated that the assembly of the 7S domain is directed by hydrophobic interactions and is self-limiting to a tetramer. The most favourable chain configuration is alpha 2-alpha 1-alpha 1.

摘要

本文给出了人基底膜胶原蛋白α2(IV)链212个残基长的N端聚集和交联区域的氨基酸序列。将其与α1(IV)7S的一级结构[Glanville等人,(1985)欧洲生物化学杂志152, 213 - 219]进行比较,发现在三个功能区域有高度相似的细分结构。这些区域包括:21个残基长的N端非三螺旋区域(NH1),含有半胱氨酸和赖氨酸残基,这些残基是假定的交联位点;一个117个残基长的三螺旋区域(TH1),负责四个分子聚集形成7S结构域,并且也具有交联位点;最后是一个10个残基长的非三螺旋区域(NH2),它在分子的三螺旋体中引入了许多柔性区域中的第一个[Hofmann等人,(1984)分子生物学杂志172, 325 - 343]。对7S结构域平行和反平行排列的三螺旋区域(TH1)之间的相互作用得分进行计算机计算,从而预测出7S复合物结构的详细模型,该模型与主要基于旋转阴影IV型胶原四聚体电子显微镜照片的模型非常吻合。结果表明,7S结构域的组装由疏水相互作用引导,并且自我限制形成四聚体。最有利的链构型是α2-α1-α1。

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