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首页> 外文期刊>Journal of cell biology >Depalmitoylated Ras traffics to and from the Golgi complex via a nonvesicular pathway
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Depalmitoylated Ras traffics to and from the Golgi complex via a nonvesicular pathway

机译:经由非囊泡途径去往高尔基复合体的去palmitoylated Ras流量

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摘要

Palmitoylation is postulated to regulate Ras signaling by modulating its intracellular trafficking and membrane microenvironment. The mechanisms by which palmitoylation contributes to these events are poorly understood. Here, we show that dynamic turnover of palmitate regulates the intracellular trafficking of HRas and NRas to and from the Golgi complex by shifting the protein between vesicular and nonvesicular modes of transport. A combination of time-lapse microscopy and photobleaching techniques reveal that in the absence of palmitoylation, GFP-tagged HRas and NRas undergo rapid exchange between the cytosol and ER/Golgi membranes, and that wild-type GFP-HRas and GFP-NRas are recycled to the Golgi complex by a nonvesicular mechanism. Our findings support a model where palmitoylation kinetically traps Ras on membranes, enabling the protein to undergo vesicular transport. We propose that a cycle of depalmitoylation and repalmitoylation regulates the time course and sites of Ras signaling by allowing the protein to be released from the cell surface and rapidly redistributed to intracellular membranes.
机译:棕榈酰化被认为通过调节其细胞内运输和膜微环境来调节Ras信号传导。棕榈酰化促成这些事件的机制了解甚少。在这里,我们表明,棕榈酸酯的动态更新通过在水泡和非水泡运输模式之间转移蛋白质来调节HRas和NRas往返高尔基体的细胞内运输。延时显微镜和光漂白技术的结合表明,在没有棕榈酰化的情况下,带有GFP标签的HRas和NRas在细胞质膜和ER /高尔基膜之间进行快速交换,并且野生型GFP-HRas和GFP-NRas被回收利用通过非囊泡机制进入高尔基体。我们的发现支持了一种模型,其中棕榈酰化作用将Ras动力学捕获在膜上,从而使蛋白质能够进行囊泡运输。我们提出,去棕榈酰化和再棕榈酰化的循环通过允许蛋白质从细胞表面释放并迅速重新分布到细胞内膜来调节时间进程和Ras信号传导的部位。

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