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在非典型溶血性尿毒症综合征中发现的补体因子 I 突变导致因子 I 的分泌或功能改变。

Mutations in complement factor I as found in atypical hemolytic uremic syndrome lead to either altered secretion or altered function of factor I.

机构信息

Department of Laboratory Medicine, Medical Protein Chemistry, Malmö University Hospital, Lund University, Sweden.

出版信息

Eur J Immunol. 2010 Jan;40(1):172-85. doi: 10.1002/eji.200939280.

Abstract

The complement system is regulated by inhibitors such as factor I (FI), a serine protease that degrades activated complement factors C4b and C3b in the presence of specific cofactors. Mutations and polymorphisms in FI and its cofactors are associated with atypical hemolytic uremic syndrome (aHUS). All 14 complement factor I mutations associated with aHUS analyzed in this study were heterozygous and generated premature stop codons (six) or amino acid substitutions (eight). Almost all of the mutants were expressed by human embryonic kidney 293 cells but only six mutants were secreted into the medium, three of which were at lower levels than WT. The remaining eight mutants were not secreted but sensitive to deglycosylation with endoglycosidase H, indicating that they were retained early in the secretory pathway. Six secreted mutants were purified and five of them were functionally altered in degradation of C4b/C3b in the fluid-phase in the presence of various cofactors and on endothelial cells. Three mutants cleaved surface-bound C3b less efficiently than WT. The D501N mutant was severely impaired both in solution and on surface irrespective of the cofactor used. In conclusion, mutations in complement factor I affect both secretion and function of FI, which leads to impaired regulation of the complement system in aHUS.

摘要

补体系统受抑制剂的调节,如因子 I (FI),它是一种丝氨酸蛋白酶,在特定辅因子存在的情况下降解活化的补体因子 C4b 和 C3b。FI 及其辅因子的突变和多态性与非典型溶血性尿毒综合征 (aHUS) 相关。本研究分析的与 aHUS 相关的所有 14 种补体因子 I 突变均为杂合子,并产生过早的终止密码子 (6 个) 或氨基酸取代 (8 个)。几乎所有的突变体都被人胚肾 293 细胞表达,但只有 6 种突变体分泌到培养基中,其中 3 种的水平低于 WT。其余 8 种突变体不分泌,但对内糖苷酶 H 的糖基化敏感,表明它们在分泌途径的早期被滞留。6 种分泌的突变体被纯化,其中 5 种在存在各种辅因子和在内皮细胞上的液相中对 C4b/C3b 的降解功能发生改变。3 种突变体对表面结合的 C3b 的切割效率低于 WT。D501N 突变体在使用任何辅因子的情况下,无论是在溶液中还是在表面上,都严重受损。总之,补体因子 I 的突变既影响 FI 的分泌又影响其功能,导致 aHUS 中补体系统的调节受损。

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