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纤维蛋白原松本III型:一种γ275精氨酸→半胱氨酸(CGC→TGC)变体——与松本I型(γ364天冬氨酸→组氨酸)和松本II型(γ308天冬酰胺→赖氨酸)的纤维蛋白聚合特性比较

Fibrinogen Matsumoto III: a variant with gamma275 Arg-->Cys (CGC-->TGC)--comparison of fibrin polymerization properties with those of Matsumoto I (gamma364 Asp-->His) and Matsumoto II (gamma308 Asn-->Lys).

作者信息

Terasawa F, Okumura N, Higuchi Y, Ishikawa S, Tozuka M, Ishida F, Kitano K, Katsuyama T

机构信息

Division of Clinical Chemistry and Medical Technology, School of Allied Medical Sciences, Shinshu University, Matsumoto, Nagano, Japan.

出版信息

Thromb Haemost. 1999 May;81(5):763-6.

Abstract

Fibrinogen Matsumoto III (M-III) is a dysfibrinogen identified in a 66-year-old woman with rectal cancer. The fibrinogen level determined by the thrombin-time method was markedly decreased in preoperative coagulation tests of her plasma. Three fibrinogen polypeptide-chain gene fragments from the proposita were amplified by the polymerase chain reaction method, then sequenced. The triplet CGC encoding the amino acid residue gamma275 was replaced by TGC, resulting in the substitution of Arg->Cys. There have been previous reports of nine families with the same alteration, nine families with an Arg->His variant and one family with an Arg->Ser variant in this residue, which has been shown to be one of the most important amino acids in the 'D:D' interaction site. In addition, there are three silent mutations in the Aalpha-chain gene and two mutations in the intron of the Bbeta-chain and the gamma-chain gene. However, none of these mutations is thought to be the cause of the dysfunctional fibrinogen. The thrombin-catalyzed fibrin polymerization in the presence of 1 mM Ca ions was markedly delayed in purified M-III. Its lag period was longer than those of Matsumoto II (M-II; gamma308Asn->Lys) and Matsumoto I (M-I; gamma364Asp-His). gamma364Asp is one of the most important residues in the polymerization pocket of the 'D:E' interaction site and gamma308Asn is located in the vicinity of a high affinity Ca2+ binding site in the D-domain, gamma311-336. The maximum slope of the polymerization curve for M-III was about 4-fold steeper than that for M-1 but less steep than that for M-II. These results may suggest that the tertiary structure of the polymerization pocket plays a more important role in the lateral aggregation of protofibrils than that of the 'D:D' interaction site.

摘要

纤维蛋白原松本III型(M-III)是在一名66岁直肠癌女性患者中发现的异常纤维蛋白原。通过凝血酶时间法测定,其术前血浆凝血试验中的纤维蛋白原水平显著降低。采用聚合酶链反应方法扩增了先证者的三个纤维蛋白原多肽链基因片段,然后进行测序。编码氨基酸残基γ275的三联体CGC被TGC取代,导致精氨酸被半胱氨酸替代。此前已有报道称,有九个家族存在相同的改变,九个家族存在精氨酸被组氨酸替代的变体,还有一个家族在该残基处存在精氨酸被丝氨酸替代的变体,该残基已被证明是“D:D”相互作用位点中最重要的氨基酸之一。此外,αA链基因中有三个沉默突变,βB链和γ链基因的内含子中有两个突变。然而,这些突变均未被认为是导致纤维蛋白原功能异常的原因。在1 mM钙离子存在的情况下,纯化的M-III中凝血酶催化的纤维蛋白聚合明显延迟。其延迟期比松本II型(M-II;γ308天冬酰胺被赖氨酸替代)和松本I型(M-I;γ364天冬氨酸-组氨酸)更长。γ364天冬氨酸是“D:E”相互作用位点聚合口袋中最重要的残基之一,γ308天冬酰胺位于D结构域中高亲和力钙离子结合位点γ311 - 336附近。M-III聚合曲线的最大斜率比M-1约陡4倍,但比M-II平缓。这些结果可能表明,聚合口袋的三级结构在原纤维的横向聚集过程中比“D:D”相互作用位点的三级结构发挥更重要的作用。

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