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凝血酶与血纤蛋白中央“E”区域复合物的晶体结构。

Crystal structure of the complex between thrombin and the central "E" region of fibrin.

作者信息

Pechik Igor, Madrazo Joel, Mosesson Michael W, Hernandez Irene, Gilliland Gary L, Medved Leonid

机构信息

Jerome H. Holland Laboratory for the Biomedical Sciences, American Red Cross, 15601 Crabbs Branch Way, Rockville, MD 20855, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Mar 2;101(9):2718-23. doi: 10.1073/pnas.0303440101. Epub 2004 Feb 20.

Abstract

Nonsubstrate interactions of thrombin with fibrin play an important role in modulating its procoagulant activity. To establish the structural basis for these interactions, we crystallized d-Phe-Pro-Arg-chloromethyl ketone-inhibited human thrombin in complex with a fragment, E(ht), corresponding to the central region of human fibrin, and solved its structure at 3.65-A resolution. The structure revealed that the complex consists of two thrombin molecules bound to opposite sides of the central part of E(ht) in a way that seems to provide proper orientation of their catalytic triads for cleavage of fibrinogen fibrinopeptides. As expected, binding occurs through thrombin's anion-binding exosite I. However, only part of it is involved in forming an interface with the complementary negatively charged surface of E(ht). Among residues constituting the interface, Phe-34, Ser-36A, Leu-65, Tyr-76, Arg-77A, Ile-82, and Lys-110 of thrombin and the A alpha chain Trp-33, Phe-35, Asp-38, Glu-39, the B beta chain Ala-68 and Asp-69, and the gamma chain Asp-27 and Ser-30 of E(ht) form a net of polar contacts surrounding a well defined hydrophobic interior. Thus, despite the highly charged nature of the interacting surfaces, hydrophobic contacts make a substantial contribution to the interaction.

摘要

凝血酶与纤维蛋白的非底物相互作用在调节其促凝血活性中起重要作用。为了确定这些相互作用的结构基础,我们使d -苯丙氨酸 - 脯氨酸 - 精氨酸 - 氯甲基酮抑制的人凝血酶与对应于人纤维蛋白中心区域的片段E(ht)形成复合物并结晶,并以3.65埃的分辨率解析了其结构。该结构显示该复合物由两个凝血酶分子结合到E(ht)中心部分的相对侧,其方式似乎为纤维蛋白原纤维肽的裂解提供了其催化三联体的正确取向。正如预期的那样,结合通过凝血酶的阴离子结合外位点I发生。然而,只有其中一部分参与与E(ht)的互补负电荷表面形成界面。在构成界面的残基中,凝血酶的苯丙氨酸 - 34、丝氨酸 - 36A、亮氨酸 - 65、酪氨酸 - 76、精氨酸 - 77A、异亮氨酸 - 82和赖氨酸 - 110以及E(ht)的Aα链色氨酸 - 33、苯丙氨酸 - 35、天冬氨酸 - 38、谷氨酸 - 39、Bβ链丙氨酸 - 68和天冬氨酸 - 69以及γ链天冬氨酸 - 27和丝氨酸 - 30形成围绕一个明确的疏水内部的极性接触网络。因此,尽管相互作用表面具有高电荷性质,但疏水接触对相互作用有很大贡献。

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