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由半胱氨酸替代精氨酸474导致的遗传性I型蛋白S缺乏症的分子基础。

Molecular basis of a hereditary type I protein S deficiency caused by a substitution of Cys for Arg474.

作者信息

Yamazaki T, Katsumi A, Kagami K, Okamoto Y, Sugiura I, Hamaguchi M, Kojima T, Takamatsu J, Saito H

机构信息

First Department of Internal Medicine, Nagoya University School of Medicine, Nagoya, Japan.

出版信息

Blood. 1996 Jun 1;87(11):4643-50.

PMID:8639833
Abstract

The molecular basis for a hereditary type I protein S (PS) deficiency was investigated. DNA sequence analysis in the proband showed a novel missense mutation substituting Cys (TGT) for Arg474 (CGT) that is a highly conserved amino acid residue among the related proteins. This missense mutation cosegregated with the type I PS deficiency in this family. Transient expression studies showed that the secretion of the recombinant Cys-mutant PS was markedly decreased compared with that of the recombinant wild-type PS, reproducing the observed phenotype of type I deficiency. Stable expression and pulse-chase experiments demonstrated an intracellular degradation and an impaired secretion of the recombinant Cys-mutant PS. Furthermore, the substitution of Arg474 by Ala or Glu, but not by Lys, markedly reduced the secretion of the recombinant PS mutants in transient expression studies, suggesting that a positively charged basic amino acid might be needed at residue 474 and might play a key role in the protein structure and conformation of the sex hormone binding globulin-homology domain of the PS molecule. We postulate that the loss of the highly conserved Arg474 might be responsible for the type I PS deficiency inherited in this family.

摘要

对一种遗传性I型蛋白S(PS)缺乏症的分子基础进行了研究。对先证者的DNA序列分析显示,存在一种新的错义突变,用半胱氨酸(TGT)替代了精氨酸474(CGT),精氨酸474是相关蛋白中高度保守的氨基酸残基。这种错义突变与该家族中的I型PS缺乏症共分离。瞬时表达研究表明,与重组野生型PS相比,重组半胱氨酸突变型PS的分泌明显减少,重现了观察到的I型缺乏症表型。稳定表达和脉冲追踪实验证明了重组半胱氨酸突变型PS的细胞内降解和分泌受损。此外,在瞬时表达研究中,用丙氨酸或谷氨酸替代精氨酸474,但用赖氨酸替代则不会,这显著降低了重组PS突变体的分泌,表明在第474位残基可能需要一个带正电荷的碱性氨基酸,并且其可能在PS分子的性激素结合球蛋白同源结构域的蛋白质结构和构象中起关键作用。我们推测,高度保守的精氨酸474的缺失可能是该家族遗传性I型PS缺乏症的原因。

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