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铺展血小板中与应力纤维相关的纽蛋白

Vinculin in relation to stress fibers in spread platelets.

作者信息

Nachmias V T, Golla R

机构信息

Dept. of Anatomy, School of Medicine, Univ. of Pennsylvania, Philadelphia 19104-6058.

出版信息

Cell Motil Cytoskeleton. 1991;20(3):190-202. doi: 10.1002/cm.970200303.

Abstract

To investigate the function of vinculin in blood platelets, we studied its localization in relation to other cytoskeletal proteins as well as its state of phosphorylation in platelets allowed to spread on fibrinogen-coated surfaces. By 5 minutes after loading the platelets onto the surfaces the 47 and 20 kDa polypeptides became phosphorylated, indicating activation. By 30 minutes, platelets formed small, typical bundles of fibers which stained brilliantly with rhodamine phalloidin. Myosin and tropomyosin, detected with specific antibodies, were localized in periodic arrays along these bundles. By indirect immunofluorescence, a discrete patch of vinculin was observed at each end of every actin-containing bundle. Vinculin phosphorylation was not detected in immunoprecipitates protected against phosphatases. Interference reflection images showed that regions of close binding to the substratum (adhesion plaques) closely matched the vinculin staining sites. Talin appeared diffusely localized. It could be shown to be present in the plaques when platelets were stabilized with ZnCl2 by the method of Geiger and then sonicated to remove some of the surface membrane. Localizations of vinculin and myosin were unaltered by this treatment. Talin phosphorylation or proteolysis could not account for vinculin translocation. We conclude that platelets, in response to an appropriate physiological surface, form typical actin bundles with vinculin at the termination of each bundle, in close relation to adhesion plaques. The signal for this translocation does not appear to depend on phosphorylation of vinculin or on phosphorylation or proteolysis of talin. Our findings support the conclusion that in platelets, as in nucleated cells, vinculin serves as at least part of the connection between bundled actin fibers and the extracellular matrix. Such a connection seems required for platelets' known ability to exert tension on surfaces.

摘要

为了研究纽蛋白在血小板中的功能,我们研究了其与其他细胞骨架蛋白相关的定位情况,以及在铺展于纤维蛋白原包被表面的血小板中其磷酸化状态。将血小板加载到表面后5分钟,47 kDa和20 kDa的多肽开始磷酸化,表明被激活。30分钟时,血小板形成了小的、典型的纤维束,用罗丹明鬼笔环肽染色后色泽鲜艳。用特异性抗体检测到的肌球蛋白和原肌球蛋白沿这些纤维束呈周期性排列。通过间接免疫荧光法,在每个含肌动蛋白的纤维束的两端都观察到了纽蛋白的离散斑块。在抗磷酸酶保护的免疫沉淀物中未检测到纽蛋白磷酸化。干涉反射图像显示,与基质紧密结合的区域(粘着斑)与纽蛋白染色位点紧密匹配。踝蛋白呈弥散性定位。当按照盖革的方法用氯化锌使血小板稳定,然后超声处理以去除部分表面膜时,可以证明它存在于斑块中。这种处理不会改变纽蛋白和肌球蛋白定位。踝蛋白磷酸化或蛋白水解不能解释纽蛋白的易位。我们得出结论,血小板在对合适的生理表面作出反应时,会形成典型的肌动蛋白纤维束,纽蛋白位于每个纤维束的末端,与粘着斑密切相关。这种易位信号似乎不依赖于纽蛋白的磷酸化,也不依赖于踝蛋白的磷酸化或蛋白水解。我们的研究结果支持这样的结论,即在血小板中,如同在有核细胞中一样,纽蛋白至少作为束状肌动蛋白纤维与细胞外基质之间连接的一部分。这种连接似乎是血小板在表面施加张力的已知能力所必需的。

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