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首页> 外文期刊>Biophysical Journal >Nanoscale probing reveals that reduced stiffness of clots from fibrinogen lacking 42 N-terminal Bbeta-chain residues is due to the formation of abnormal oligomers.
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Nanoscale probing reveals that reduced stiffness of clots from fibrinogen lacking 42 N-terminal Bbeta-chain residues is due to the formation of abnormal oligomers.

机译:纳米级探测表明,缺乏42个N端Bbeta链残基的血纤蛋白原引起的血凝块硬度降低是由于异常寡聚物的形成。

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摘要

Removal of Bbetal-42 from fibrinogen by Crotalus atrox venom results in a molecule lacking fibrinopeptide B and part of a thrombin binding site. We investigated the mechanism of polymerization of desBbeta1-42 fibrin. Fibrinogen trinodular structure was clearly observed using high resolution noncontact atomic force microscopy. E-regions were smaller in desBbeta1-42 than normal fibrinogen (1.2 nm +/- 0.3 vs. 1.5 nm +/- 0.2), whereas there were no differences between the D-regions (1.7 nm +/- 0.4 vs. 1.7 nm +/- 0.3). Polymerization rate for desBbeta1-42 was slower than normal, resulting in clots with thinner fibers. Differences in oligomers were found, with predominantly lateral associations for desBbeta1-42 and longitudinal associations for normal fibrin. Clot elasticity as measured by magnetic tweezers showed a G' of approximately 1 Pa for desBbeta1-42 compared with approximately 8 Pa for normal fibrin. Spring constants of early stage desBbeta1-42 single fibers determined by atomic force microscopy wereapproximately 3 times less than normal fibers of comparable dimensions and development. We conclude that Bbeta1-42 plays an important role in fibrin oligomer formation. Absence of Bbeta1-42 influences oligomer structure, affects the structure and properties of the final clot, and markedly reduces stiffness of the whole clot as well as individual fibrin fibers.
机译:猪屎豆毒素从纤维蛋白原中去除Bbetal-42会导致分子中缺乏纤维蛋白肽B和部分凝血酶结合位点。我们研究了desBbeta1-42纤维蛋白的聚合机理。使用高分辨率非接触原子力显微镜可以清楚地观察到纤维蛋白原的三结节结构。 desBbeta1-42中的E区比正常的纤维蛋白原小(1.2 nm +/- 0.3 vs. 1.5 nm +/- 0.2),而D区之间没有差异(1.7 nm +/- 0.4 vs. 1.7 nm +/- 0.3)。 desBbeta1-42的聚合速度比正常速度慢,导致纤维更细的凝块。发现寡聚物的差异,主要是desBbeta1-42的横向关联和正常血纤蛋白的纵向关联。通过磁镊测量的凝块弹性显示,desBbeta1-42的G'约为1 Pa,而正常血纤蛋白的G'约为8 Pa。通过原子力显微镜测定的早期desBbeta1-42单纤维的弹簧常数比尺寸和发展可比的普通纤维约小3倍。我们得出结论,Bbeta1-42在纤维蛋白低聚物形成中起重要作用。 Bbeta1-42的缺乏会影响低聚物的结构,影响最终凝块的结构和性质,并显着降低整个凝块以及单个纤维蛋白纤维的硬度。

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