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水蛭素3-凝血酶复合物的结构以及底物和抑制剂S'亚位点的性质。

Structure of the hirulog 3-thrombin complex and nature of the S' subsites of substrates and inhibitors.

作者信息

Qiu X, Padmanabhan K P, Carperos V E, Tulinsky A, Kline T, Maraganore J M, Fenton J W

机构信息

Department of Chemistry, Michigan State University, East Lansing 48824-1322.

出版信息

Biochemistry. 1992 Dec 1;31(47):11689-97. doi: 10.1021/bi00162a004.

Abstract

The X-ray crystallographic structure of the human alpha-thrombin complex with hirulog 3 (a potent, noncleavable hirudin-based peptide of the "hirulog" class containing a beta-homoarginine at the scissile bond), which is isomorphous with that of the hirugen-thrombin crystal structure, was solved at 2.3-A resolution by starting with a model for thrombin derived from the hirugen-thrombin complex and was refined by restrained least squares methods (R = 0.132). Residues of hirulog 3 were well-defined in the electron density, which included most of the pentaglycine linker and the C-terminal helical turn that was disordered in a related structure of thrombin with hirulog 1. The interactions of D-Phe1'-Pro2'-beta-homoArg3' with the active site of thrombin were essentially identical to those of related structures of PPACK- (D-Phe-Pro-Arg chloromethyl ketone) and hirulog 1-thrombin, with the guanidinium function of the arginyl P1 residue forming a hydrogen-bonding ion pair with Asp189 of the S1 site. A noticeable shift in the CA atom of beta-homoArg3' due to the methylene insertion displaces the scissile bond from attack by Ser195, thus imparting proteolytic stability to the beta-homoArg hirulog derivative. Resolution of the pentaglycine spacer, linking N- and C-terminal functional domains into a single oligopeptide bivalent inhibitor, permitted delineation of corresponding S' subsites of thrombin. The position of Gly4' (P1') is stabilized by three hydrogen bonds with His57, Lys60F, and Ser195, while the conformational angles maintained in a strained, nonallowed configuration for non-glycyl amino acids.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

人α-凝血酶与水蛭素3(一种“水蛭素类”强效、不可裂解的基于水蛭素的肽,在可裂解键处含有β-高精氨酸)的X射线晶体结构与水蛭素-凝血酶晶体结构同晶型,通过以源自水蛭素-凝血酶复合物的凝血酶模型为起始,在2.3埃分辨率下解析得到,并通过约束最小二乘法进行精修(R = 0.132)。水蛭素3的残基在电子密度图中定义明确,其中包括大部分五甘氨酸连接子以及在凝血酶与水蛭素1的相关结构中无序的C末端螺旋转角。D-Phe1'-Pro2'-β-高精氨酸3'与凝血酶活性位点的相互作用与PPACK-(D-苯丙氨酸-脯氨酸-精氨酸氯甲基酮)和水蛭素1-凝血酶的相关结构基本相同,精氨酰P1残基的胍基功能与S1位点的天冬氨酸189形成氢键离子对。由于亚甲基插入导致β-高精氨酸3'的CA原子发生明显位移,使可裂解键无法被丝氨酸195攻击,从而赋予β-高精氨酸水蛭素衍生物蛋白水解稳定性。连接N端和C端功能域形成单一寡肽二价抑制剂的五甘氨酸间隔区的解析,使得能够描绘凝血酶相应的S'亚位点。甘氨酸4'(P1')的位置通过与组氨酸57、赖氨酸60F和丝氨酸195形成的三个氢键得以稳定,而非甘氨酰氨基酸则保持在应变的、非允许构象角度。(摘要截短至250字)

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