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Dynamics of the fragment of thrombomodulin containing the fourth and fifth epidermal growth factor-like domains correlate with function.

机译:包含第四和第五表皮生长因子样结构域的血栓调节蛋白片段的动力学与功能相关。

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摘要

Thrombomodulin (TM) forms a 1:1 complex with thrombin. Whereas thrombin alone cleaves fibrinogen to make the fibrin clot, the thrombin-TM complex cleaves protein C to initiate the anticoagulant pathway. The fourth and fifth EGF-like domains of TM together form the minimal fragment with anticoagulant cofactor activity. A short linker connects the fourth and fifth EGF-like domains of TM, and Met 388 in the middle of the linker interacts with both domains. Several different structures of TMEGF45 variants are now available, and these show that mutation of Met 388 alters the structure of the fifth domain, as well as the connectivity of the two domains. To probe this phenomenon more thoroughly, NMR backbone dynamics experiments have been carried out on the individual fourth and fifth domains as well as on the wild type, the Met 388 Leu mutant, and the variant in which Met 388 is oxidized. The results presented here show that changes at Met 388 cause significant changes in backbone dynamics in both the fourthand fifth EGF-like domains of TM. Backbone dynamics within the small loop of the fourth domain Tyr 358 correlate with anticoagulant cofactor activity. Backbone dynamics of the thrombin-binding residues Tyr 413 and Ile 414 are inversely correlated with thrombin binding. The preordering of the backbone of Tyr 413 and Ile 414 only occurs in the two-domain fragments, revealing a role for the fourth domain in thrombin binding as well as in anticoagulant cofactor activity.
机译:血栓调节蛋白(TM)与凝血酶形成1:1的复合物。凝血酶单独裂解纤维蛋白原以形成纤维蛋白凝块,而凝血酶-TM复合物裂解蛋白C以启动抗凝途径。 TM的第四和第五EGF样结构域一起形成具有抗凝血辅因子活性的最小片段。短连接子连接TM的第四和第五EGF样结构域,并且在连接子中间的Met 388与这两个结构域相互作用。现在可以使用TMEGF45变体的几种不同结构,这些结构表明Met 388的突变改变了第五个域的结构以及两个域的连通性。为了更彻底地探究此现象,已经对单个的第四和第五域以及野生型,Met 388 Leu突变体和Met 388被氧化的变异体进行了NMR主链动力学实验。此处显示的结果表明,Met 388的变化导致TM的第四个和第五个EGF样结构域的骨架动力学发生显着变化。第四结构域Tyr 358小环内的骨干动力学与抗凝血辅因子活性相关。凝血酶结合残基Tyr 413和Ile 414的骨干动力学与凝血酶结合成反比。 Tyr 413和Ile 414骨架的预排序仅在两个结构域片段中发生,从而揭示了第四结构域在凝血酶结合以及抗凝血辅因子活性中的作用。

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