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分子动力学模拟表明,代谢物诱导的翻译后修饰会改变纤维蛋白原卷曲螺旋结构域的行为。

Molecular Dynamic Simulations Suggest That Metabolite-Induced Post-Translational Modifications Alter the Behavior of the Fibrinogen Coiled-Coil Domain.

作者信息

Sovova Zofie, Suttnar Jiri, Dyr Jan E

机构信息

Department of Biochemistry, Institute of Hematology and Blood Transfusion, U Nemocnice 1, 128 00 Prague, Czech Republic.

出版信息

Metabolites. 2021 May 11;11(5):307. doi: 10.3390/metabo11050307.

Abstract

Fibrinogen is an abundant blood plasma protein that, inter alia, participates in blood coagulation. It polymerizes to form a fibrin clot that is among the major components of the thrombus. Fibrinogen reactions with various reactive metabolites may induce post-translational modifications (PTMs) into the protein structure that affect the architecture and properties of fibrin clots. We reviewed the previous literature to find the positions of PTMs of fibrinogen. For 7 out of 307 reported PTMs, we used molecular dynamics simulations to characterize their effect on the behavior of the fibrinogen coiled-coil domain. Interactions of the γ-coil with adjacent chains give rise to π-helices in Aα and Bβ chains of even unmodified fibrinogen. The examined PTMs suppress fluctuations of the γ-coil, which may affect the fibrinolysis and stiffness of the fibrin fibers. Citrullination of AαR104 and oxidations of γP70 and γP76 to glutamic semialdehyde unfold the α-helical structure of Aα and Bβ chains. Oxidation of γM78 to methionine sulfoxide induces the formation of an α-helix in the γ-coil region. Our findings suggest that certain PTMs alter the protein secondary structure. Thus, the altered protein structure may indicate the presence of PTMs in the molecule and consequently of certain metabolites within the system.

摘要

纤维蛋白原是一种丰富的血浆蛋白,尤其参与血液凝固过程。它聚合形成纤维蛋白凝块,这是血栓的主要成分之一。纤维蛋白原与各种活性代谢产物的反应可能会导致蛋白质结构发生翻译后修饰(PTM),从而影响纤维蛋白凝块的结构和特性。我们回顾了以往的文献,以确定纤维蛋白原翻译后修饰的位置。对于307个已报道的翻译后修饰中的7个,我们使用分子动力学模拟来表征它们对纤维蛋白原卷曲螺旋结构域行为的影响。即使是未修饰的纤维蛋白原,γ螺旋与相邻链的相互作用也会在Aα和Bβ链中产生π螺旋。所研究的翻译后修饰抑制了γ螺旋的波动,这可能会影响纤维蛋白纤维的纤维蛋白溶解和硬度。AαR104的瓜氨酸化以及γP70和γP76氧化为谷氨酸半醛会使Aα和Bβ链的α螺旋结构展开。γM78氧化为甲硫氨酸亚砜会在γ螺旋区域诱导形成α螺旋。我们的研究结果表明,某些翻译后修饰会改变蛋白质的二级结构。因此,改变后的蛋白质结构可能表明分子中存在翻译后修饰,进而表明系统中存在某些代谢产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51b1/8150326/821c946f8317/metabolites-11-00307-g001.jpg

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