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人补体C3与IgG的共价连接。参与酯键形成的氨基酸残基的鉴定。

Covalent attachment of human complement C3 to IgG. Identification of the amino acid residue involved in ester linkage formation.

作者信息

Sahu A, Pangburn M K

机构信息

Department of Biochemistry, University of Texas Health Science Center, Tyler 75710.

出版信息

J Biol Chem. 1994 Nov 18;269(46):28997-9002.

PMID:7961863
Abstract

C3 (native complement component 3) plays a central role in the activation of complement and in the transport and processing of immune complexes. Proteolytic activation of C3 exposes a highly reactive thioester bond which preferentially reacts with the hydroxyl groups of acceptor molecules on activators such as immune complexes or carbohydrates on microorganisms. Recently, a C3 attachment site has been localized on the CH1 domain of IgG1 between Val134 and Lys156. We have synthesized a series of peptide analogs of this region to identify the preferred residue for C3b (the proteolytically activated form of C3) attachment. The parent peptide included all 6 hydroxyl-containing amino acids present in the proposed binding site and was highly reactive with activated C3. The C3b-peptide complex was sensitive to hydroxylamine as was C3b-IgG indicating that both were ester-linked. The kinetic profile of hydrolysis of the C3b-peptide complex under physiologic conditions was found to be nearly identical to the profiles of C3b-IgG, C3b-IgG1, and C3b-glycerol complexes. Site-specific amino acid substitution of threonine and serine residues in the peptide indicated that, in contrast to the attachment site in C4b, little or no attachment occurred at serine residues. The threonine corresponding to Thr144 in the CH1 domain of IgG was found to be the major acceptor site for C3b. Thr148 was the second most reactive site on the peptide, but this residue is buried in native IgG.

摘要

C3(天然补体成分3)在补体激活以及免疫复合物的转运和处理过程中发挥核心作用。C3的蛋白水解激活会暴露出一个高反应性硫酯键,该键优先与激活剂(如免疫复合物)上受体分子的羟基或微生物上的碳水化合物发生反应。最近,一个C3附着位点已定位在IgG1的CH1结构域中Val134和Lys156之间。我们合成了该区域的一系列肽类似物,以确定C3b(C3的蛋白水解激活形式)附着的优选残基。亲本肽包含了提议结合位点中所有6个含羟基的氨基酸,并且与活化的C3具有高反应性。C3b-肽复合物对羟胺敏感,C3b-IgG也是如此,这表明两者都是酯连接的。发现在生理条件下C3b-肽复合物的水解动力学曲线与C3b-IgG、C3b-IgG1和C3b-甘油复合物的曲线几乎相同。肽中苏氨酸和丝氨酸残基的位点特异性氨基酸取代表明,与C4b中的附着位点相反,丝氨酸残基处很少或没有发生附着。在IgG的CH1结构域中与Thr144对应的苏氨酸被发现是C3b的主要受体位点。Thr148是肽上第二高反应性的位点,但该残基在天然IgG中是埋藏的。

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