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β-肌营养不良蛋白聚糖调节人黏附血小板中肌动蛋白和微管之间的相互作用。

beta-Dystroglycan modulates the interplay between actin and microtubules in human-adhered platelets.

作者信息

Cerecedo Doris, Cisneros Bulmaro, Suárez-Sánchez Rocío, Hernández-González Enrique, Galván Iván

机构信息

Laboratorio de Hematobiología, Escuela Nacional de Medicina y Homeopatía, Instituto Politécnico Nacional (IPN), México.

出版信息

Br J Haematol. 2008 May;141(4):517-28. doi: 10.1111/j.1365-2141.2008.07048.x. Epub 2008 Mar 12.

Abstract

To maintain the continuity of an injured blood vessel, platelets change shape, secrete granule contents, adhere, aggregate, and retract in a haemostatic plug. Ordered arrays of microtubules, microfilaments, and associated proteins are responsible for these platelet responses. In full-spread platelets, microfilament bundles in association with other cytoskeleton proteins are anchored in focal contacts. Recent studies in migrating cells suggest that co-ordination and direct physical interaction of microtubules and actin network modulate adhesion development. In platelets, we have proposed a feasible association between these two cytoskeletal systems, as well as the participation of the dystrophin-associated protein complex, as part of the focal adhesion complex. The present study analysed the participation of microtubules and actin during the platelet adhesion process. Confocal microscopy, fluorescence resonance transfer energy and immunoprecipitation assays were used to provide evidence of a cross-talk between these two cytoskeletal systems. Interestingly, beta-dystroglycan was found to act as an interplay protein between actin and microtubules and an additional communication between these two cytoskeleton networks was maintained through proteins of focal adhesion complex. Altogether our data are indicative of a dynamic co-participation of actin filaments and microtubules in modulating focal contacts to achieve platelet function.

摘要

为维持受损血管的连续性,血小板会改变形状、分泌颗粒内容物、黏附、聚集并在止血栓中收缩。微管、微丝及相关蛋白的有序排列负责这些血小板反应。在完全伸展的血小板中,与其他细胞骨架蛋白相关的微丝束锚定在黏着斑中。最近对迁移细胞的研究表明,微管和肌动蛋白网络的协调及直接物理相互作用调节黏附的发展。在血小板中,我们提出了这两个细胞骨架系统之间的一种可行关联,以及肌营养不良蛋白相关蛋白复合物作为黏着斑复合物一部分的参与情况。本研究分析了微管和肌动蛋白在血小板黏附过程中的参与情况。共聚焦显微镜、荧光共振能量转移和免疫沉淀分析被用于提供这两个细胞骨架系统之间存在相互作用的证据。有趣的是,发现β-肌营养不良聚糖作为肌动蛋白和微管之间的相互作用蛋白,并且通过黏着斑复合物的蛋白维持了这两个细胞骨架网络之间的额外通讯。总之,我们的数据表明肌动蛋白丝和微管在调节黏着斑以实现血小板功能方面存在动态共同参与。

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