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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Common variation in the C-terminal region of the fibrinogen beta-chain: effects on fibrin structure, fibrinolysis and clot rigidity.
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Common variation in the C-terminal region of the fibrinogen beta-chain: effects on fibrin structure, fibrinolysis and clot rigidity.

机译:血纤蛋白原β链C末端区域的常见变化:对血纤蛋白结构,血纤蛋白溶解和血凝块硬度的影响。

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摘要

Fibrinogen BbetaArg448Lys is a common polymorphism, positioned within the carboxyl terminus of the Bbeta-chain of the molecule. Studies suggest that it is associated with severity of coronary artery disease and development of stroke. The effects of the amino acid substitution on clot structure remains controversial, and the aim of this study was to investigate the effect(s) of this polymorphism on fibrin clot structure using recombinant techniques. Permeation, turbidity, and scanning electron microscopy showed that recombinant Lys448 fibrin had a significantly more compact structure, with thin fibers and small pores, compared with Arg448. Clot stiffness, measured by means of a novel method using magnetic tweezers, was significantly higher for the Lys448 compared with the Arg448 variant. Clots made from recombinant protein variants had similar lysis rates outside the plasma environment, but when added to fibrinogen-depleted plasma, the fibrinolysis rates for Lys448 were significantly slower compared with Arg448. This study demonstrates for the first time that clots made from recombinant BbetaLys448 fibrinogen are characterized by thin fibers and small pores, show increased stiffness, and appear more resistant to fibrinolysis. Fibrinogen BbetaArg448Lys is a primary example of common genetic variation with a significant phenotypic effect at the molecular level.
机译:纤维蛋白原BbetaArg448Lys是常见的多态性,位于分子Bbeta链的羧基末端内。研究表明,它与冠状动脉疾病的严重程度和中风的发展有关。氨基酸取代对血凝块结构的影响仍然存在争议,本研究的目的是使用重组技术研究这种多态性对血纤蛋白凝块结构的影响。渗透,浊度和扫描电子显微镜显示,与Arg448相比,重组Lys448纤维蛋白的结构紧密得多,具有细纤维和小孔。与Arg448变体相比,Lys448的抗凝刚度(通过新颖的方法使用磁镊子测量)明显更高。由重组蛋白变体制成的凝块在血浆环境之外具有相似的裂解速率,但是当添加到贫血纤维蛋白原的血浆中时,与Arg448相比,Lys448的纤维蛋白溶解速率明显更慢。这项研究首次证明了由重组BbetaLys448纤维蛋白原制成的凝块的特征是细纤维和小孔,显示出增加的硬度,并显示出对纤维蛋白溶解的更强的抵抗力。纤维蛋白原BbetaArg448Lys是常见遗传变异的一个主要例子,在分子水平上具有明显的表型效应。

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