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豚鼠补体C3缺乏的分子基础。

Molecular basis of complement C3 deficiency in guinea pigs.

作者信息

Auerbach H S, Burger R, Dodds A, Colten H R

机构信息

Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Clin Invest. 1990 Jul;86(1):96-106. doi: 10.1172/JCI114721.

Abstract

In experiments to ascertain the biochemical basis of a genetically determined deficiency of the third component of complement (C3) in guinea pigs, we found that C3-deficient liver and peritoneal macrophages contain C3 messenger RNA of normal size (approximately 5 kb) and amounts, that this mRNA programs synthesis of pro-C3 in oocytes primed with liver RNA and in primary macrophage cultures. In each instance, heterodimeric native C3 protein was secreted with normal kinetics but the C3 protein product of the deficient cells failed to undergo autolytic cleavage and was unusually susceptible to proteolysis. These data and a selective failure of C3 in plasma of deficient animals to incorporate [14C]methylamine suggested either a mutation in primary structure of the C3 protein or a selective defect in co- or postsynthetic processing affecting the thiolester bridge, a structure important for C3 function. A mutation in the primary structure of C3 was ruled out by comparison of direct sequence analysis of C3 cDNA generated from two C3 deficient and two C3 sufficient guinea pig liver libraries. Three base pair differences, none resulting in derived amino acid sequence differences were identified. Finally, restriction fragment length polymorphisms were identified in the C3 gene that are independent of the deficiency phenotype. This marker of the C3 gene permits testing of these hypotheses using molecular biological and classical genetic methods.

摘要

在确定豚鼠中由基因决定的补体第三成分(C3)缺乏的生化基础的实验中,我们发现C3缺乏的肝脏和腹腔巨噬细胞含有正常大小(约5kb)和数量的C3信使核糖核酸,这种信使核糖核酸在经肝脏核糖核酸启动的卵母细胞和原代巨噬细胞培养物中指导前C3的合成。在每种情况下,异二聚体天然C3蛋白以正常动力学分泌,但缺陷细胞的C3蛋白产物未能进行自溶裂解,并且异常易受蛋白水解作用。这些数据以及缺陷动物血浆中C3选择性地未能掺入[14C]甲胺表明,要么C3蛋白的一级结构发生了突变,要么在影响硫酯桥的共合成或合成后加工过程中存在选择性缺陷,硫酯桥是对C3功能很重要的一种结构。通过比较从两个C3缺陷和两个C3充足的豚鼠肝脏文库生成的C3互补脱氧核糖核酸的直接序列分析,排除了C3一级结构中的突变。鉴定出三个碱基对差异,但均未导致推导的氨基酸序列差异。最后,在C3基因中鉴定出与缺陷表型无关的限制性片段长度多态性。C3基因的这个标记允许使用分子生物学和经典遗传学方法来检验这些假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e86b/296695/92d1873ddb9e/jcinvest00073-0107-a.jpg

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