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α251纤维蛋白原分析:αC结构域在聚合反应中发挥作用,尽管其作用比类似的蛋白水解片段X所预期的更为微妙。

Analysis of A alpha 251 fibrinogen: the alpha C domain has a role in polymerization, albeit more subtle than anticipated from the analogous proteolytic fragment X.

作者信息

Gorkun O V, Henschen-Edman A H, Ping L F, Lord S T

机构信息

Department of Pathology and Laboratory Medicine, Curriculum in Genetics and Molecular Biology, University of North Carolina at Chapel Hill 27599-7525, USA.

出版信息

Biochemistry. 1998 Nov 3;37(44):15434-41. doi: 10.1021/bi981551t.

Abstract

Numerous experiments have demonstrated that the C-terminal domain of the fibrinogen Aalpha-chain, the alphaC domain, has a role in polymerization. To further examine the role of this domain, we synthesized a recombinant fibrinogen, Aalpha251 fibrinogen, that lacks the alphaC domain. We examined thrombin-catalyzed fibrinopeptide release and found that the rate of FpB release from Aalpha251 fibrinogen was 2.5-fold slower than FpB release from normal fibrinogen, while the rate of FpA release was the same for both proteins. We examined thrombin-catalyzed polymerization and found that the rates of protofibril formation and lateral aggregation were similar for both proteins, although discernible differences in lateral aggregation were clear. The rate of protofibril formation for Aalpha251 fibrinogen was never less than 85% of normal fibrinogen, while the rate of lateral aggregation for Aalpha251 fibrinogen varied from 64 to 74% of normal. We examined polymerization of fibrin monomers and found that polymerization of Aalpha251 fibrin was similar to normal fibrin at 0.4 M NaCl, but clearly different from normal at 0.05 M NaCl. These results indicate that the alphaC domain has a role in lateral aggregation, but this role is more subtle than anticipated from previous experiments, particularly those with fibrinogen fragment X. We interpret this unanticipated finding as indicative of an important contribution from the N-terminus of the beta-chain, such that protein heterogeneity that includes small amounts of fibrin lacking that N-terminus of the beta-chain leads to markedly altered lateral aggregation.

摘要

众多实验表明,纤维蛋白原Aα链的C末端结构域(αC结构域)在聚合过程中发挥作用。为进一步研究该结构域的作用,我们合成了一种缺乏αC结构域的重组纤维蛋白原——Aα251纤维蛋白原。我们检测了凝血酶催化的纤维蛋白肽释放情况,发现Aα251纤维蛋白原释放FpB的速率比正常纤维蛋白原慢2.5倍,而两种蛋白释放FpA的速率相同。我们检测了凝血酶催化的聚合反应,发现两种蛋白的原纤维形成速率和侧向聚集速率相似,不过侧向聚集存在明显的可辨别差异。Aα251纤维蛋白原的原纤维形成速率从未低于正常纤维蛋白原的85%,而Aα251纤维蛋白原的侧向聚集速率为正常的64%至74%。我们检测了纤维蛋白单体的聚合反应,发现Aα251纤维蛋白在0.4M NaCl浓度下的聚合反应与正常纤维蛋白相似,但在0.05M NaCl浓度下明显不同。这些结果表明,αC结构域在侧向聚集中发挥作用,但该作用比先前实验预期的更为微妙,尤其是那些涉及纤维蛋白原片段X的实验。我们将这一意外发现解释为β链N末端的重要贡献,即包含少量缺乏β链N末端的纤维蛋白的蛋白质异质性会导致侧向聚集明显改变。

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