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重组水蛭素与人α-凝血酶复合物的结构

The structure of a complex of recombinant hirudin and human alpha-thrombin.

作者信息

Rydel T J, Ravichandran K G, Tulinsky A, Bode W, Huber R, Roitsch C, Fenton J W

机构信息

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

出版信息

Science. 1990 Jul 20;249(4966):277-80. doi: 10.1126/science.2374926.

Abstract

The crystallographic structure of a recombinant hirudin-thrombin complex has been solved at 2.3 angstrom (A) resolution. Hirudin consists of an NH2-terminal globular domain and a long (39 A) COOH-terminal extended domain. Residues Ile1 to Tyr3 of hirudin form a parallel beta-strand with Ser214 to Glu217 of thrombin with the nitrogen atom of Ile1 making a hydrogen bond with Ser195 O gamma atom of the catalytic site, but the specificity pocket of thrombin is not involved in the interaction. The COOH-terminal segment makes numerous electrostatic interactions with an anion-binding exosite of thrombin, whereas the last five residues are in a helical loop that forms many hydrophobic contacts. In all, 27 of the 65 residues of hirudin have contacts less than 4.0 A with thrombin (10 ion pairs and 23 hydrogen bonds). Such abundant interactions may account for the high affinity and specificity of hirudin.

摘要

重组水蛭素 - 凝血酶复合物的晶体结构已在2.3埃(Å)分辨率下解析出来。水蛭素由一个NH2端球状结构域和一个长(39 Å)的COOH端延伸结构域组成。水蛭素的Ile1至Tyr3残基与凝血酶的Ser214至Glu217形成一条平行的β链,Ile1的氮原子与催化位点的Ser195 Oγ原子形成氢键,但凝血酶的特异性口袋不参与这种相互作用。COOH端片段与凝血酶的阴离子结合外位点进行大量静电相互作用,而最后五个残基处于一个螺旋环中,形成许多疏水接触。总之,水蛭素65个残基中的27个与凝血酶的接触距离小于4.0 Å(10个离子对和23个氢键)。如此丰富的相互作用可能解释了水蛭素的高亲和力和特异性。

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