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凝血酶阴离子结合外位点I的结构完整性对于因子V和因子VIII的及时裂解和激活是必需且充分的。

The structural integrity of anion binding exosite I of thrombin is required and sufficient for timely cleavage and activation of factor V and factor VIII.

作者信息

Bukys Michael A, Orban Tivadar, Kim Paul Y, Beck Daniel O, Nesheim Michael E, Kalafatis Michael

机构信息

Department of Chemistry, Cleveland State University, Cleveland, Ohio 44115, USA.

出版信息

J Biol Chem. 2006 Jul 7;281(27):18569-80. doi: 10.1074/jbc.M600752200. Epub 2006 Apr 19.

Abstract

Alpha-thrombin has two separate electropositive binding exosites (anion binding exosite I, ABE-I and anion binding exosite II, ABE-II) that are involved in substrate tethering necessary for efficient catalysis. Alpha-thrombin catalyzes the activation of factor V and factor VIII following discrete proteolytic cleavages. Requirement for both anion binding exosites of the enzyme has been suggested for the activation of both procofactors by alpha-thrombin. We have used plasma-derived alpha-thrombin, beta-thrombin (a thrombin molecule that has only ABE-II available), and a recombinant prothrombin molecule rMZ-II (R155A/R284A/R271A) that can only be cleaved at Arg(320) (resulting in an enzymatically active molecule that has only ABE-I exposed, rMZ-IIa) to ascertain the role of each exosite for procofactor activation. We have also employed a synthetic sulfated pentapeptide (DY(SO(3)(-))DY(SO(3)(-))Q, designated D5Q1,2) as an exosite-directed inhibitor of thrombin. The clotting time obtained with beta-thrombin was increased by approximately 8-fold, whereas rMZ-IIa was 4-fold less efficient in promoting clotting than alpha-thrombin under similar experimental conditions. Alpha-thrombin readily activated factor V following cleavages at Arg(709), Arg(1018), and Arg(1545) and factor VIII following proteolysis at Arg(372), Arg(740), and Arg(1689). Cleavage of both procofactors by alpha-thrombin was significantly inhibited by D5Q1,2. In contrast, beta-thrombin was unable to cleave factor V at Arg(1545) and factor VIII at both Arg(372) and Arg(1689). The former is required for light chain formation and expression of optimum factor Va cofactor activity, whereas the latter two cleavages are a prerequisite for expression of factor VIIIa cofactor activity. Beta-thrombin was found to cleave factor V at Arg(709) and factor VIII at Arg(740), albeit less efficiently than alpha-thrombin. The sulfated pentapeptide inhibited moderately both cleavages by beta-thrombin. Under similar experimental conditions, membrane-bound rMZ-IIa cleaved and activated both procofactor molecules. Activation of the two procofactors by membrane-bound rMZ-IIa was severely impaired by D5Q1,2. Overall the data demonstrate that ABE-I alone of alpha-thrombin can account for the interaction of both procofactors with alpha-thrombin resulting in their timely and efficient activation. Because formation of meizothrombin precedes that of alpha-thrombin, our findings also imply that meizothrombin may be the physiological activator of both procofactors in vivo in the presence of a procoagulant membrane surface during the early stages of coagulation.

摘要

α-凝血酶有两个独立的带正电荷的结合外位点(阴离子结合外位点I,ABE-I和阴离子结合外位点II,ABE-II),它们参与有效催化所需的底物束缚。α-凝血酶通过离散的蛋白水解切割催化因子V和因子VIII的激活。已表明α-凝血酶激活这两种前辅因子需要该酶的两个阴离子结合外位点。我们使用了血浆来源的α-凝血酶、β-凝血酶(一种仅具有ABE-II的凝血酶分子)和一种重组凝血酶原分子rMZ-II(R155A/R284A/R271A),该分子仅在精氨酸(320)处可被切割(产生一个仅暴露ABE-I的具有酶活性的分子,rMZ-IIa),以确定每个外位点在激活前辅因子中的作用。我们还使用了一种合成的硫酸化五肽(DY(SO(3)(-))DY(SO(3)(-))Q,命名为D5Q1,2)作为凝血酶的外位点定向抑制剂。在类似实验条件下,β-凝血酶的凝血时间增加了约8倍,而rMZ-IIa促进凝血的效率比α-凝血酶低4倍。α-凝血酶在精氨酸(709)、精氨酸(1018)和精氨酸(1545)处切割后能轻易激活因子V,在精氨酸(372)、精氨酸(740)和精氨酸(1689)处蛋白水解后能激活因子VIII。D5Q1,2显著抑制了α-凝血酶对两种前辅因子的切割。相比之下,β-凝血酶无法在精氨酸(1545)处切割因子V,也无法在精氨酸(372)和精氨酸(1689)处切割因子VIII。前者是轻链形成和最佳因子Va辅因子活性表达所必需的,而后者两次切割是因子VIIIa辅因子活性表达的先决条件。发现β-凝血酶能在精氨酸(709)处切割因子V,在精氨酸(740)处切割因子VIII,但效率低于α-凝血酶。硫酸化五肽适度抑制了β-凝血酶的这两种切割。在类似实验条件下,膜结合的rMZ-IIa能切割并激活两种前辅因子分子。膜结合的rMZ-IIa对两种前辅因子的激活受到D5Q1,2的严重损害。总体而言,数据表明α-凝血酶单独的ABE-I就能解释两种前辅因子与α-凝血酶的相互作用,从而实现它们的及时有效激活。由于中凝血酶的形成先于α-凝血酶,我们的发现还意味着在凝血早期,在促凝膜表面存在的情况下,中凝血酶可能是体内两种前辅因子的生理激活剂。

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