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凝血酶对纤维蛋白原里尔N端肽段的水解:动力学和核磁共振研究

Thrombin hydrolysis of an N-terminal peptide from fibrinogen Lille: kinetic and NMR studies.

作者信息

Zheng Z, Ashton R W, Ni F, Scheraga H A

机构信息

Baker Laboratory of Chemistry, Cornell University, Ithaca, New York 14853-1301.

出版信息

Biochemistry. 1992 May 12;31(18):4426-31. doi: 10.1021/bi00133a006.

Abstract

Fibrinogen Lille, a congenital dysfibrinogenemia, has been reported to arise from a mutation from Asp to Asn at position 7 of the A alpha chain of human fibrinogen, thereby reducing the thrombin-catalyzed rate of hydrolysis of the Arg(16)-Gly(17) peptide bond of this chain. Synthetic peptides of relevant portions of the wild-type and mutant A alpha chains were prepared, and the thrombin-catalyzed rates of hydrolysis of their Arg(16)-Gly(17) peptide bonds were determined. In addition, transferred NOE measurements were made to deduce their conformations, when complexed to bovine thrombin. The kinetics data showed little difference in the hydrolysis rates between the wild-type and mutant peptides, and the NMR data indicate no difference in the bound conformation of these two peptides. Therefore, electrostatic (or salt-bridge) interactions between Asp(7) and thrombin do not influence the bound conformations of these peptides. Asp(7) may interact with a remote residue of fibrinogen, not present in these synthetic peptides, or there may be additional mutations beyond A alpha (1-20) which have not been detected in fibrinogen Lille. Alternatively, when thrombin binds to fibrinogen at its secondary binding site, its primary (active) site may display different reactivities toward wild-type fibrinogen and fibrinogen Lille.

摘要

纤维蛋白原里尔(Fibrinogen Lille)是一种先天性异常纤维蛋白原血症,据报道它源于人纤维蛋白原Aα链第7位的天冬氨酸(Asp)突变为天冬酰胺(Asn),从而降低了该链中精氨酸(16)-甘氨酸(17)肽键的凝血酶催化水解速率。制备了野生型和突变型Aα链相关部分的合成肽,并测定了它们的精氨酸(16)-甘氨酸(17)肽键的凝血酶催化水解速率。此外,进行了转移核Overhauser效应(NOE)测量,以推断它们与牛凝血酶复合时的构象。动力学数据表明野生型和突变型肽之间的水解速率差异不大,核磁共振(NMR)数据表明这两种肽的结合构象没有差异。因此,天冬氨酸(7)与凝血酶之间的静电(或盐桥)相互作用不会影响这些肽的结合构象。天冬氨酸(7)可能与纤维蛋白原中这些合成肽中不存在的一个远距离残基相互作用,或者在Aα(1-20)之外可能存在尚未在纤维蛋白原里尔中检测到的其他突变。或者,当凝血酶在其二级结合位点与纤维蛋白原结合时,其一级(活性)位点可能对野生型纤维蛋白原和纤维蛋白原里尔表现出不同的反应性。

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