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pH对补体因子I蛋白水解活性的调节:C3b/C4b受体(CR1)和膜辅助蛋白(MCP)在因子I介导的C3b裂解中具有不同的最适pH值。

Regulation of proteolytic activity of complement factor I by pH: C3b/C4b receptor (CR1) and membrane cofactor protein (MCP) have different pH optima for factor I-mediated cleavage of C3b.

作者信息

Seya T, Okada M, Nishino H, Atkinson J P

机构信息

Department of Immunology, Center for Adult Diseases, Osaka.

出版信息

J Biochem. 1990 Feb;107(2):310-5. doi: 10.1093/oxfordjournals.jbchem.a123044.

Abstract

C3b/C4b receptor (CR1) and membrane cofactor protein (MCP) are integral membrane glycoproteins with factor I-dependent cofactor activity. They bind to C3b, allowing factor I to cleave C3b at two sites (first and second cleavage), which results in the generation of C3bi, a hemolytically inactive form which is a ligand for complement receptor type three (CR3). C3bi is further degraded by factor I and CR1 (third cleavage) to C3dg (a ligand for complement receptor type two, CR2) and C3c. Using two different substrates, fluid-phase C3b and cell-bound C3b, the cleavage of C3b by MCP and factor I was compared to that by CR1 and factor I under various conditions. The optimal pH for the first and second cleavage of either substrate was 6.0 for MCP and 7.5 for CR1. The third cleavage was mediated only by CR1 and factor I, the optimal pH being 8.0. Low ionic conditions enhanced the C3b binding and cofactor activity of both CR1 and MCP. The efficiency of binding C3b to CR1 or MCP was maximal at pH 6.2. The isoelectric point (pI) of MCP was acidic (approximately 4.0), while that of CR1 was 6.8. Therefore, compared to CR1, MCP possesses distinct functional profiles relative to C3b-binding and factor I-cofactor activity.

摘要

C3b/C4b受体(CR1)和膜辅因子蛋白(MCP)是具有I因子依赖性辅因子活性的整合膜糖蛋白。它们与C3b结合,使I因子在两个位点切割C3b(第一次和第二次切割),从而产生C3bi,一种无溶血活性的形式,它是补体受体3型(CR3)的配体。C3bi进一步被I因子和CR1降解(第三次切割)为C3dg(补体受体2型,CR2的配体)和C3c。使用两种不同的底物,即液相C3b和细胞结合的C3b,在各种条件下比较了MCP和I因子对C3b的切割与CR1和I因子对C3b的切割。对于任何一种底物的第一次和第二次切割,MCP的最佳pH值为6.0,CR1的最佳pH值为7.5。第三次切割仅由CR1和I因子介导,最佳pH值为8.0。低离子条件增强了CR1和MCP的C3b结合及辅因子活性。C3b与CR1或MCP结合的效率在pH 6.2时最大。MCP的等电点(pI)呈酸性(约为4.0),而CR1的等电点为6.8。因此,与CR1相比,MCP在C3b结合和I因子辅因子活性方面具有不同的功能特征。

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