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人类补体亚成分C1的功能模型

Functional model of subcomponent C1 of human complement.

作者信息

Weiss V, Fauser C, Engel J

出版信息

J Mol Biol. 1986 Jun 5;189(3):573-81. doi: 10.1016/0022-2836(86)90325-6.

Abstract

The domain organization of the zymogen subunits of the first component of human complement C1s, C1r2 and the complex C1s-C1r2-C1s was studied by electron microscopy. In the absence of Ca2+, monomeric C1s was visualized as a dumb-bell-shaped molecule consisting of two globular domains (center-to-center distance 11 nm) connected by a rod. One of the globular domains is assigned to the light chain (B-chain) of the activated molecule, which is homologous to trypsin and other serine proteases. The second globular domain and the rod are assigned to the heavy chain (A-chain) of CIs. The subunit C1r is a stable dimer in the presence or absence of Ca2+. This dimer C1r2 was visualized as composed of two dumb-bells of dimensions similar to those observed for C1s. These are connected near the junctions between the rod and one of the globular domains. This leads to the structure of an asymmetrical X with two inner closely spaced globules (center-to-center distance 7 nm) and two outer globules at a larger distance (14 nm). By comparison with fragment C1rII2, in which part of the A-chain is removed, the inner globular domains were assigned to the catalytic B-chains. This characteristic structure of C1r2 is readily recognized in the central portion of the thread-like 54 nm long C1s-C1r2-C1s complex formed in the presence of Ca2+. By affinity-labeling of C1s with biotin and visualization of avidin-ferritin conjugates in the reconstituted complex, it was demonstrated that C1s forms the outer portion of the complex. A detailed model of C1s-C1r2-C1s is proposed, according to which two C1s monomers bind to the outer globes of C1r2 by contacts between their heavy chains and those of C1r. According to this model the catalytic domains of C1r are located in the center and those of C1s at the very tips of the C1s-C1r2-C1s complex. On the basis of the structure of C1s-C1r2-C1s, we derived a detailed model of the C1 complex (composed of C1q and the tetrameric complex) and we discuss this model with a view to finding a possible activation mechanism of C1.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过电子显微镜研究了人类补体C1s第一成分的酶原亚基、C1r2以及C1s - C1r2 - C1s复合物的结构域组织。在没有Ca2 +的情况下,单体C1s呈现为哑铃状分子,由通过杆连接的两个球状结构域(中心距11nm)组成。其中一个球状结构域对应于活化分子的轻链(B链),它与胰蛋白酶和其他丝氨酸蛋白酶同源。第二个球状结构域和杆对应于C1s的重链(A链)。亚基C1r在有或没有Ca2 +的情况下都是稳定的二聚体。这种二聚体C1r2呈现为由两个尺寸与C1s观察到的相似的哑铃组成。它们在杆和其中一个球状结构域之间的连接处附近相连。这导致形成一个不对称X结构,有两个内部紧密间隔的小球(中心距7nm)和两个距离较大的外部小球(14nm)。通过与去除了部分A链的片段C1rII2比较,内部球状结构域被确定为催化性B链。在有Ca2 +存在时形成的54nm长的丝状C1s - C1r2 - C1s复合物的中心部分很容易识别出C1r2的这种特征结构。通过用生物素对C1s进行亲和标记并在重组复合物中观察抗生物素蛋白 - 铁蛋白缀合物,证明C1s形成复合物的外部部分。提出了C1s - C1r2 - C1s的详细模型,根据该模型,两个C1s单体通过其重链与C1r重链之间的接触结合到C1r2的外部球体上。根据这个模型,C1r的催化结构域位于中心,而C1s的催化结构域位于C1s - C1r2 - C1s复合物的最末端。基于C1s - C1r2 - C1s的结构,我们推导了C1复合物(由C1q和四聚体复合物组成)的详细模型,并讨论了这个模型,以期找到C1可能的激活机制。(摘要截短至400字)

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