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通过重组DNA技术对补体成分C9进行拓扑图谱分析,提示了其插入靶膜的一种新机制。

Topological mapping of complement component C9 by recombinant DNA techniques suggests a novel mechanism for its insertion into target membranes.

作者信息

Stanley K K, Herz J

机构信息

European Molecular Biology Laboratory, Heidelberg, FRG.

出版信息

EMBO J. 1987 Jul;6(7):1951-7. doi: 10.1002/j.1460-2075.1987.tb02457.x.

Abstract

cDNA molecules coding for mouse and trout C9 have been isolated and the derived amino acid sequences compared with that of human C9. Regions of high homology between the closely related species (mouse and human) correlate with putative domains in the protein structure supporting a model of C9 having five globular domains. Comparison between the more distant species (trout and human) suggests regions of particular importance to C9 structure and function. In addition the three related sequences allow the secondary structure to be predicted with more confidence and we have tested the prediction by mapping surface features of the protein. Reported here is a recombinant DNA approach to fine mapping of antibody epitopes. Two of the putative domains of C9 are connected by a stretch of about 40 amino acid residues in which features characteristic of individual conformational forms of C9 are concentrated. We suggest that this region might act as a hinge allowing the rearrangement of globular domains necessary for membrane insertion. In the membrane inserting domain one highly conserved sequence has the potential to form an amphipathic alpha-helix once it is buried in the lipid bilayer. These features suggest a novel mechanism for the irreversible, post-translational insertion of C9 into target membranes.

摘要

编码小鼠和鳟鱼C9的cDNA分子已被分离出来,并将推导的氨基酸序列与人类C9的序列进行了比较。亲缘关系较近的物种(小鼠和人类)之间的高度同源区域与蛋白质结构中的假定结构域相关,支持C9具有五个球状结构域的模型。亲缘关系较远的物种(鳟鱼和人类)之间的比较表明了对C9结构和功能特别重要的区域。此外,这三个相关序列使二级结构的预测更具可信度,并且我们已经通过绘制蛋白质的表面特征来测试该预测。本文报道了一种用于精细定位抗体表位的重组DNA方法。C9的两个假定结构域由一段约40个氨基酸残基连接,C9个体构象形式的特征集中于此区域。我们认为该区域可能起到铰链的作用,允许球状结构域重排以实现膜插入。在膜插入结构域中,一个高度保守的序列一旦埋入脂质双层就有可能形成两亲性α螺旋。这些特征提示了一种将C9不可逆地翻译后插入靶膜的新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d5f/553582/2e451eb22b6d/emboj00247-0109-a.jpg

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