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Roles of fibrin α- and γ-chain specific cross-linking by FXIIIa in fibrin structure and function

机译:FXIIIa在纤维蛋白结构和功能中纤维蛋白α-和γ-链特异性交联的作用

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摘要

Factor XIII is responsible for the cross-linking of fibrin γ-chains in the early stages of clot formation, whilst α-chain cross-linking occurs at a slower rate. Although γ- and α-chain cross-linking was previously shown to contribute to clot stiffness, the role of cross-linking of both chains in determining clot structure is currently unknown. Therefore, the aim of this study was to determine the role of individual α- and γ-chain cross-linking during clot formation, and its effects on clot structure. We made use of a recombinant fibrinogen (γQ398N/Q399N/K406R), which does not allow for γ-chain cross-linking. In the absence of cross-linking, intact D-D interface was shown to play a potential role in fibre appearance time, clot stiffness and elasticity. Cross-linking of the fibrin α-chain played a role in the thickening of the fibrin fibres over time, and decreased lysis rate in the absence of α2-antiplasmin. We also showed that α-chain cross-linking played a role in the timing of fibre appearance, straightening fibres, increasing clot stiffness and reducing clot deformation. Cross-linking of the γ-chain played a role in fibrin fibre appearance time and fibre density. Our results show that α- and γ-chain cross-linking play independent and specific roles in fibrin clot formation and structure.
机译:XIII因子负责血凝块形成初期纤维蛋白γ链的交联,而α链交联的发生速度较慢。尽管以前已证明γ和α链的交联有助于凝块的硬度,但目前尚不了解两条链的交联在确定凝块结构中的作用。因此,本研究的目的是确定凝块形成过程中单个α-链和γ-链交联的作用及其对凝块结构的影响。我们使用了重组纤维蛋白原(γQ398N/ Q399N / K406R),该纤维蛋白原不允许γ链交联。在没有交联的情况下,完整的D-D界面显示出在纤维出现时间,凝块硬度和弹性方面的潜在作用。纤维蛋白α链的交联在一段时间内在纤维蛋白纤维的增厚中起作用,并且在不存在α2-抗纤溶酶的情况下降低了裂解速率。我们还表明,α链交联在纤维出现的时间,拉直纤维,增加凝块硬度和减少凝块变形方面发挥了作用。 γ链的交联在纤维蛋白纤维的出现时间和纤维密度中起作用。我们的结果表明,α和γ链交联在纤维蛋白凝块的形成和结构中起着独立而特定的作用。

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