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针对纤维蛋白原不同结构域的Fab片段对纤维蛋白网络超微结构的修饰作用。

Modification of fibrin network ultrastructure by Fab fragments specific for different domain of fibrinogen.

作者信息

Cierniewski C S, Janiak A, Wyroba E

出版信息

Acta Biochim Pol. 1986;33(3):195-202.

PMID:2433859
Abstract

Kinetics of inhibition of fibrin monomer polymerization produced by Fab fragments prepared from immunochemically purified monospecific antibodies to the surface epitopes of different domains of fibrinogen molecule has been correlated with electron microscopic observations of resulting specimens. Fab fragments prepared from anti FgD antisera were the most efficient inhibitors of thrombin-catalysed conversion of fibrinogen to fibrin; polymerization of fibrin monomers as detected spectrophotometrically was abolished at 2:1 molar ratio of anti FgD Fab fragments to fibra monomer. These Fab fragments acting as a steric hindrance of polymerization sites inhibited the first stage of fibrin monomer aggregation. Interaction of Fab fragments derived from antibodies specific for alpha 239-476 with corresponding segment of fibrinogen molecule resulted in a weak inhibition of fibrin monomer polymerization. However, fibrin obtained in the presence of these Fab fragments was significantly modified and showed no periodicity. This observation may suggest that anti alpha 239-476 Fab impaired the course of the second stage of fibrin monomer polymerization, i.e. lateral association of fibrin fibrils.

摘要

由针对纤维蛋白原分子不同结构域表面表位的免疫化学纯化单特异性抗体制备的Fab片段对纤维蛋白单体聚合的抑制动力学,已与所得标本的电子显微镜观察结果相关联。由抗FgD抗血清制备的Fab片段是凝血酶催化纤维蛋白原转化为纤维蛋白的最有效抑制剂;当抗FgD Fab片段与纤维蛋白单体的摩尔比为2:1时,通过分光光度法检测到的纤维蛋白单体聚合被消除。这些作为聚合位点空间位阻的Fab片段抑制了纤维蛋白单体聚集的第一阶段。源自针对α239 - 476特异性抗体的Fab片段与纤维蛋白原分子的相应片段相互作用,导致对纤维蛋白单体聚合的微弱抑制。然而,在这些Fab片段存在下获得的纤维蛋白有显著改变且无周期性。这一观察结果可能表明抗α239 - 476 Fab损害了纤维蛋白单体聚合第二阶段的进程,即纤维蛋白原纤维的侧向缔合。

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