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首页> 外文期刊>Journal of Cell Science >Single-molecule diffusion measurements of H-Ras at the plasma membrane of live cells reveal microdomain localization upon activation
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Single-molecule diffusion measurements of H-Ras at the plasma membrane of live cells reveal microdomain localization upon activation

机译:H-Ras在活细胞质膜上的单分子扩散测量显示激活后微域定位

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Recent studies show that the partitioning of the small GTPase H-Ras in different types of membrane microdomains is dependent on guanosine 5'-triphosphate (GTP)-loading of H-Ras. Detailed knowledge about the in vivo dynamics of this phenomenon is limited. In this report, the effect of the activation of H-Ras on its microdomain localization was studied by single-molecule fluorescence microscopy. Individual human H-Ras molecules fused to the enhanced yellow fluorescent protein (eYFP) were imaged in the dorsal plasma membrane of live mouse cells and their diffusion behavior was analyzed. The diffusion of a constitutively inactive (S17N) and constitutively active (G12V) mutant of H-Ras was compared. Detailed analysis revealed that for both mutants a major, fast-diffusing population and a minor, slow-diffusing population were present. The slow-diffusing fraction of the active mutant was confined to 200 nm domains, which were not observed for the inactive mutant. In line with these results we observed that the slow-diffusing fraction of wild-type H-Ras became confined to 200 nm domains upon insulin-induced activation of wild-type H-Ras. This activation-dependent localization of H-Ras to 200 nm domains, for the first time directly detected in live cells, supports the proposed relationship between H-Ras microdomain localization and activation.
机译:最近的研究表明,小GTPase H-Ras在不同类型的膜微区中的分配取决于H-Ras的鸟苷5'-三磷酸(GTP)负载。关于这种现象的体内动力学的详细知识是有限的。在此报告中,通过单分子荧光显微镜研究了H-Ras激活对其微域定位的影响。与增强的黄色荧光蛋白(eYFP)融合的单个人类H-Ras分子在活小鼠细胞的背质膜中成像,并分析了它们的扩散行为。比较了H-Ras的组成性无活性(S17N)和组成性有活性(G12V)突变体的扩散。详细的分析显示,对于这两个突变体,均存在主要的快速扩散种群和次要的缓慢扩散种群。活性突变体的缓慢扩散部分被限制在200 nm域内,非活性突变体未观察到。与这些结果一致,我们观察到在胰岛素诱导的野生型H-Ras激活后,野生型H-Ras的缓慢扩散部分被限制在200nm域内。首次在活细胞中直接检测到这种H-Ras到200 nm域的激活依赖性定位,支持了H-Ras微域定位和激活之间的关系。

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