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2
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Thromb Haemost. 1991 Sep 2;66(3):300-5.

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Fibrinogen Milano IV (A alpha 16 Arg-->His): characterization of its abnormal interaction with human alpha-thrombin.米兰纤维蛋白原IV(Aα16位精氨酸突变为组氨酸):其与人类α-凝血酶异常相互作用的特征
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Thrombin-thrombomodulin interaction: energetics and potential role of water as an allosteric effector.凝血酶-血栓调节蛋白相互作用:水作为变构效应剂的能量学及潜在作用
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THE PREPARATION AND SOME PROPERTIES OF FIBRINOGEN PRECIPITATED FROM HUMAN PLASMA BY GLYCINE.用甘氨酸从人血浆中沉淀出的纤维蛋白原的制备及其某些性质
Proc Soc Exp Biol Med. 1963 Aug-Sep;113:989-94. doi: 10.3181/00379727-113-28553.
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Investigation of diffusion-limited rates of chymotrypsin reactions by viscosity variation.通过粘度变化研究胰凝乳蛋白酶反应的扩散限制速率。
Biochemistry. 1982 Mar 16;21(6):1302-7. doi: 10.1021/bi00535a030.
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The action of thrombin on peptide p-nitroanilide substrates. Substrate selectivity and examination of hydrolysis under different reaction conditions.凝血酶对肽对硝基苯胺底物的作用。底物选择性及不同反应条件下水解的研究。
Biochim Biophys Acta. 1983 Feb 15;742(3):539-57. doi: 10.1016/0167-4838(83)90272-8.
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Adenosine deaminase: viscosity studies and the mechanism of binding of substrate and of ground- and transition-state analogue inhibitors.腺苷脱氨酶:粘度研究以及底物与基态和过渡态类似物抑制剂的结合机制
Biochemistry. 1987 Jun 2;26(11):3027-32. doi: 10.1021/bi00385a012.
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Thrombin.凝血酶
Ann N Y Acad Sci. 1986;485:5-15. doi: 10.1111/j.1749-6632.1986.tb34563.x.
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Enzymatic properties of proteolytic derivatives of human alpha-thrombin.人α-凝血酶蛋白水解衍生物的酶学性质
Biochemistry. 1988 Mar 22;27(6):2144-51. doi: 10.1021/bi00406a049.
7
Localization of the binding site on fibrin for the secondary binding site of thrombin.凝血酶二级结合位点在纤维蛋白上的结合位点定位。
Biochemistry. 1988 Mar 22;27(6):1956-63. doi: 10.1021/bi00406a023.
8
Effect of thrombomodulin on the kinetics of the interaction of thrombin with substrates and inhibitors.血栓调节蛋白对凝血酶与底物及抑制剂相互作用动力学的影响。
Biochem J. 1986 Jul 1;237(1):243-51. doi: 10.1042/bj2370243.
9
How do serine proteases really work?丝氨酸蛋白酶究竟是如何发挥作用的?
Biochemistry. 1989 May 2;28(9):3629-37. doi: 10.1021/bi00435a001.
10
Contribution of the N-terminal region of hirudin to its interaction with thrombin.水蛭素N端区域在其与凝血酶相互作用中的作用。
Biochemistry. 1989 Dec 26;28(26):10079-84. doi: 10.1021/bi00452a030.

水蛭素C末端结构域的结合与人α-凝血酶中酰胺酶活性之间的联系。

The linkage between binding of the C-terminal domain of hirudin and amidase activity in human alpha-thrombin.

作者信息

de Cristofaro R, Rocca B, Bizzi B, Landolfi R

机构信息

Centro Ricerche Fisiopatologia dell'Emostasi, Università Cattolica S. Cuore, Roma, Italy.

出版信息

Biochem J. 1993 Jan 15;289 ( Pt 2)(Pt 2):475-80. doi: 10.1042/bj2890475.

DOI:10.1042/bj2890475
PMID:8424791
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1132192/
Abstract

A method derived from the analysis of viscosity effects on the hydrolysis of the amide substrates D-phenylalanylpipecolyl-arginine-p-nitroaniline, tosylglycylprolylarginine-p-nitroanaline and cyclohexylglycylalanylarginine-p-nitroalanine by human alpha-thrombin was developed to dissect the Michaelis-Menten parameters Km and kcat into the individual rate constants of the binding, acylation and deacylation reactions. This method was used to analyse the effect of the C-terminal hirudin (residues 54-65) [hir-(54-65)] domain on the binding and hydrolysis of the three substrates. The results showed that the C-terminal hir-(54-65) fragment affects only the acylation rate, which is increased approx. 1.2-fold for all the substrates. Analysis of the dependence of acylation rate constants on hirudin-fragment concentration, allowed the determination of the equilibrium binding constant of C-terminal hir-(54-65) (Kd approximately 0.7 microM). In addition this peptide was found to competitively inhibit thrombin-fibrinogen interaction with a Ki which is in excellent agreement with the equilibrium constant derived from viscosity experiments. These results demonstrate that binding of hir-(54-65) to the fibrinogen recognition site of thrombin does not affect the equilibrium binding of amide substrates, but induces only a small increase in the acylation rate of the hydrolysis reaction.

摘要

一种源自对人α-凝血酶作用于酰胺底物D-苯丙氨酰哌啶基-精氨酸-对硝基苯胺、甲苯磺酰甘氨酰脯氨酰精氨酸-对硝基苯胺和环己基甘氨酰丙氨酰精氨酸-对硝基苯胺水解的粘度效应分析的方法被开发出来,用于将米氏参数Km和kcat分解为结合、酰化和脱酰化反应的各个速率常数。该方法用于分析C端水蛭素(残基54 - 65)[hir-(54 - 65)]结构域对这三种底物结合和水解的影响。结果表明,C端hir-(54 - 65)片段仅影响酰化速率,所有底物的酰化速率均提高了约1.2倍。通过分析酰化速率常数对水蛭素片段浓度的依赖性,确定了C端hir-(54 - 65)的平衡结合常数(Kd约为0.7 microM)。此外,发现该肽能竞争性抑制凝血酶 - 纤维蛋白原相互作用,其抑制常数Ki与粘度实验得出的平衡常数高度一致。这些结果表明,hir-(54 - 65)与凝血酶的纤维蛋白原识别位点结合并不影响酰胺底物的平衡结合,而仅使水解反应的酰化速率略有增加。