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在过量纤维蛋白原片段D存在的情况下形成的可溶性聚合纤维蛋白的特性分析。

Characterization of soluble polymerized fibrin formed in the presence of excess fibrinogen fragment D.

作者信息

Knoll D, Hantgan R, Williams J, McDonagh J, Hermans J

出版信息

Biochemistry. 1984 Jul 31;23(16):3708-15. doi: 10.1021/bi00311a021.

Abstract

Polymerization of fibrin is inhibited in the presence of excess fibrinogen fragment D. This study was performed in order to test the proposal that these inhibited solutions contain short linear polymers of fibrin (protofibrils) whose further polymerization is prevented as a result of attachment of a molecule of fragment D at each end. Negative-stain electron micrographs, intrinsic viscosities, angular dependence of light scattering intensity, and kinetics of the increase of the scattered intensity with polymerization all were found to support the above model of the inhibited polymer and to reflect the presence of a broad distribution of the lengths of the inhibited fibrin polymers. Furthermore, sodium dodecyl sulfate-polyacrylamide gel electrophoresis of polymers stabilized with gamma-dimer cross-links introduced by factor XIIIa demonstrates cross-linking of fragment D to fibrin oligomers. Cross-linked polymers have been separated from excess fragment D by gel exclusion chromatography in 1 M urea. (In the absence of urea, the purified polymers very slowly associate to fibers.) The observation of the relative stability of short isolated inhibited protofibrils and the decrease or absence of inhibition of fibrin gelation when fragment D was added to solutions in which fibrin had been given time to polymerize to long protofibrils demonstrate that the inhibitory effect of fragment D occurs as a result of inhibition of the first fibrin polymerization step.

摘要

在存在过量纤维蛋白原片段D的情况下,纤维蛋白的聚合受到抑制。进行这项研究是为了验证以下提议:这些受抑制的溶液中含有纤维蛋白的短线性聚合物(原纤维),由于每个末端附着一个片段D分子,其进一步聚合受到阻止。负染色电子显微镜照片、特性粘度、光散射强度的角度依赖性以及散射强度随聚合增加的动力学,均被发现支持上述受抑制聚合物的模型,并反映出受抑制纤维蛋白聚合物长度的广泛分布。此外,通过因子XIIIa引入的γ-二聚体交联稳定化的聚合物的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳显示,片段D与纤维蛋白寡聚体发生交联。已通过在1 M尿素中的凝胶排阻色谱法将交联聚合物与过量的片段D分离。(在没有尿素的情况下,纯化的聚合物非常缓慢地聚合成纤维。)对短的分离的受抑制原纤维的相对稳定性以及当片段D添加到纤维蛋白已聚合成长原纤维的溶液中时纤维蛋白凝胶化抑制作用的降低或不存在的观察表明,片段D的抑制作用是由于抑制了纤维蛋白的第一步聚合而产生的。

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