首页> 外文期刊>Methods: A Companion to Methods in Enzymology >FRAP beam-size analysis to measure palmitoylation-dependent membrane association dynamics and microdomain partitioning of Ras proteins.
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FRAP beam-size analysis to measure palmitoylation-dependent membrane association dynamics and microdomain partitioning of Ras proteins.

机译:FRAP束大小分析以测量棕榈酰化依赖性膜缔合动力学和Ras蛋白的微区分配。

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摘要

Motions of membrane-associated proteins within and between membranes are essential for many cellular functions. We describe the application of fluorescence recovery after photobleaching (FRAP) beam-size analysis to investigate the role of palmitoylation in the membrane targeting and membrane association dynamics of H-Ras. The method described distinguishes between FRAP by lateral diffusion and by cytoplasmic exchange, and enables to obtain an estimate of the membrane affinity in live cells. These studies show distinct roles for the two palmitoylation sites (Cys181 and Cys184) on H-Ras, with different effects on membrane affinity and microlocalization.
机译:膜内和膜之间的膜相关蛋白的运动对于许多细胞功能至关重要。我们描述了在光漂白(FRAP)束大小分析后荧光恢复的应用,以研究棕榈酰化在H-Ras的膜靶向和膜缔合动力学中的作用。所描述的方法通过侧向扩散和细胞质交换来区分FRAP,并能够获得活细胞中膜亲和力的估计值。这些研究显示了H-Ras上两个棕榈酰化位点(Cys181和Cys184)的独特作用,对膜亲和力和微定位有不同的影响。

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