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基于结构的C3d与补体受体2(CD21)结合所必需残基的鉴定。

Structure-guided identification of C3d residues essential for its binding to complement receptor 2 (CD21).

作者信息

Clemenza L, Isenman D E

机构信息

Department of Biochemistry, University of Toronto, Ontario, Canada.

出版信息

J Immunol. 2000 Oct 1;165(7):3839-48. doi: 10.4049/jimmunol.165.7.3839.

DOI:10.4049/jimmunol.165.7.3839
PMID:11034390
Abstract

A vital role for complement in adaptive humoral immunity is now beyond dispute. The crucial interaction is that between B cell and follicular dendritic cell-resident complement receptor 2 (CR2, CD21) and its Ag-associated ligands iC3b and C3dg, where the latter have been deposited as a result of classical pathway activation. Despite the obvious importance of this interaction, the location of a CR2 binding site within C3d, a proteolytic limit fragment of C3dg retaining CR2 binding activity, has not been firmly established. The recently determined x-ray structure of human C3d suggested a candidate site that was remote from the site of covalent attachment to Ag and consisted of an acidic residue-lined depression, which accordingly displays a significant electronegative surface potential. These attributes were consistent with the known ionic strength dependence of the CR2-C3d interaction and with the fact that a significant electropositive surface was apparent in a modeled structure of the C3d-binding domains of CR2. Therefore, we have performed an alanine scan of all of the residues within and immediately adjacent to the acidic pocket in C3d. By testing the mutant iC3b molecules for their ability to bind CR2, we have identified two separate clusters of residues on opposite sides of the acidic pocket, specifically E37/E39 and E160/D163/I164/E166, as being important CR2-contacting residues in C3d. Within the second cluster even single mutations cause near total loss of CR2 binding activity. Consistent with the proposed oppositely charged nature of the interface, we have also found that removal of a positive charge immediately adjacent to the acidic pocket (mutant K162A) results in a 2-fold enhancement in CR2 binding activity.

摘要

补体在适应性体液免疫中发挥关键作用,这一点现已无可争议。关键的相互作用发生在B细胞与滤泡树突状细胞表面的补体受体2(CR2,CD21)及其与抗原相关的配体iC3b和C3dg之间,后者是经典途径激活后沉积形成的。尽管这种相互作用至关重要,但C3d(C3dg的一个保留CR2结合活性的蛋白水解限制性片段)中CR2结合位点的位置尚未明确确定。最近测定的人C3d的X射线结构提示了一个候选位点,该位点远离与抗原的共价连接位点,由一个内衬酸性残基的凹陷组成,因此显示出显著的负电表面电位。这些特性与已知的CR2 - C3d相互作用对离子强度的依赖性以及CR2的C3d结合结构域模型结构中明显的正电表面这一事实相符。因此,我们对C3d中酸性口袋内及紧邻其的所有残基进行了丙氨酸扫描。通过测试突变型iC3b分子结合CR2的能力,我们确定了酸性口袋两侧两个独立的残基簇,即E37/E39和E160/D163/I164/E166,它们是C3d中与CR2接触的重要残基。在第二个簇中,即使单个突变也会导致CR2结合活性几乎完全丧失。与所提出的界面带相反电荷的性质一致,我们还发现去除紧邻酸性口袋的一个正电荷(突变体K162A)会使CR2结合活性提高2倍。

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