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重组α1(VIII)和α2(VIII)胶原同三聚体的表达及超分子组装

Expression and supramolecular assembly of recombinant alpha1(viii) and alpha2(viii) collagen homotrimers.

作者信息

Stephan Simon, Sherratt Michael J, Hodson Nigel, Shuttleworth C Adrian, Kielty Cay M

机构信息

Wellcome Trust Centre for Cell Matrix Research and UK Centre for Tissue Engineering, School of Biological Sciences, 2.205 Stopford Building, University of Manchester, Oxford Road, Manchester M13 9PT, United Kingdom.

出版信息

J Biol Chem. 2004 May 14;279(20):21469-77. doi: 10.1074/jbc.M305805200. Epub 2004 Feb 27.

Abstract

Collagen VIII is an extracellular matrix macromolecule comprising two polypeptide chains, alpha1(VIII) and alpha2(VIII), that can form homotrimers in vitro and in vivo. Here, recombinant collagen VIII was expressed to study its supramolecular assembly following secretion. Cells transfected with alpha1(VIII) or alpha2(VIII) assembled and secreted homotrimers that were stable in denaturing conditions and had a molecular mass of approximately 180 kDa on SDS-PAGE gels. Co-transfection with prolyl 4-hydroxylase generated homotrimers with stable pepsin-resistant triple-helical domains. Size fractionation of native recombinant collagen VIII molecules expressed with or without prolyl 4-hydroxylase identified urea-sensitive high molecular mass assemblies eluting in the void volume of a Superose 6HR 10/30 column and urea-resistant assemblies of approximately 700 kDa, all of which were composed of homotrimers. Immunofluorescence analysis highlighted the extracellular deposition of recombinant alpha1(VIII)(3), alpha2(VIII)(3), and co-expressed alpha1(VIII)(3)/alpha2(VIII)(3). Microscopy analysis of recombinant collagen VIII identified rod-like molecules of 134 nm in length that assembled into angular arrays with branching angles of approximately 114 degrees and extensive networks. Based on these data, we propose a model of collagen VIII assembly in which four homotrimers form a tetrahedron stabilized by central interacting C-terminal NC1 trimers. Tetrahedrons may then act as building blocks of three-dimensional hexagonal lattices generated by secondary interactions involving terminal and helical sequences.

摘要

VIII型胶原蛋白是一种细胞外基质大分子,由两条多肽链α1(VIII)和α2(VIII)组成,在体外和体内均可形成同三聚体。在此,我们表达重组VIII型胶原蛋白以研究其分泌后的超分子组装。用α1(VIII)或α2(VIII)转染的细胞组装并分泌了同三聚体,这些同三聚体在变性条件下稳定,在SDS-PAGE凝胶上的分子量约为180 kDa。与脯氨酰4-羟化酶共转染产生了具有稳定的耐胃蛋白酶三螺旋结构域的同三聚体。对有或没有脯氨酰4-羟化酶表达的天然重组VIII型胶原蛋白分子进行尺寸分级分离,鉴定出在Superose 6HR 10/30柱的空体积中洗脱的对尿素敏感的高分子量组装体和大约700 kDa的耐尿素组装体,所有这些组装体均由同三聚体组成。免疫荧光分析突出了重组α1(VIII)(3)、α2(VIII)(3)以及共表达的α1(VIII)(3)/α2(VIII)(3)的细胞外沉积。重组VIII型胶原蛋白的显微镜分析鉴定出长度为134 nm的棒状分子,这些分子组装成分支角度约为114度的角状阵列和广泛的网络。基于这些数据,我们提出了一个VIII型胶原蛋白组装模型,其中四个同三聚体形成一个由中央相互作用的C末端NC1三聚体稳定的四面体。然后,四面体可作为由涉及末端和螺旋序列的二级相互作用产生的三维六边形晶格的构建块。

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