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人血清使肌动蛋白丝解聚的能力。

Capacity of human serum to depolymerize actin filaments.

作者信息

Janmey P A, Lind S E

出版信息

Blood. 1987 Aug;70(2):524-30.

PMID:3038216
Abstract

Human blood depolymerizes filamentous (F-)actin. The interaction of actin filaments and monomers with human serum was studied by following the kinetics and extent of the depolymerization of pyrene-labeled F-actin and by analysis of serum proteins adhering to immobilized actin monomers. In physiologic Ca2+ concentrations, the depolymerization of F-actin proceeds in two stages: a rapid phase, attributed to direct severing of filaments by plasma gelsolin, and a slow phase attributed to the binding of actin monomers to vitamin D-binding protein (DBP). Without Ca2+, only the slow phase is observed. Human serum can completely depolymerize 10 to 18 mumol/L of actin, of which approximately 5 mumol/L occurs rapidly. Depolymerization can be accounted for by the normal serum concentrations of gelsolin and DBP. Fibrin(ogen) and fibronectin, which bind actin in vitro, do not contribute to the kinetics or extent of its depolymerization. Affinity chromatography and functional assays for the presence of gelsolin-actin complexes show that addition of G-actin to serum results in preferential formation of actin-DBP complexes, but that addition of F-actin to serum produces both gelsolin-actin complexes and DBP-actin complexes. The distinctive binding of actin monomers and polymers to these two serum proteins suggests a means by which their coordinated actions are maximized in vivo, from the standpoint of depolymerizing filaments and clearing monomers from the circulation.

摘要

人血可使丝状(F-)肌动蛋白解聚。通过追踪芘标记的F-肌动蛋白解聚的动力学和程度以及分析附着于固定化肌动蛋白单体上的血清蛋白,研究了肌动蛋白丝和单体与人血清的相互作用。在生理Ca2+浓度下,F-肌动蛋白的解聚分两个阶段进行:快速阶段,归因于血浆凝溶胶蛋白对丝的直接切断;缓慢阶段,归因于肌动蛋白单体与维生素D结合蛋白(DBP)的结合。在无Ca2+的情况下,仅观察到缓慢阶段。人血清可使10至18μmol/L的肌动蛋白完全解聚,其中约5μmol/L迅速发生。凝溶胶蛋白和DBP的正常血清浓度可解释这种解聚现象。在体外结合肌动蛋白的纤维蛋白(原)和纤连蛋白对其解聚的动力学或程度没有影响。对凝溶胶蛋白-肌动蛋白复合物存在情况的亲和层析和功能分析表明,向血清中添加G-肌动蛋白会优先形成肌动蛋白-DBP复合物,但向血清中添加F-肌动蛋白会产生凝溶胶蛋白-肌动蛋白复合物和DBP-肌动蛋白复合物。肌动蛋白单体和聚合物与这两种血清蛋白的独特结合表明,从使丝解聚并从循环中清除单体的角度来看,它们在体内的协同作用得以最大化的一种方式。

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