首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: GPCR-controlled membrane recruitment of negative regulator C2GAP1 locally inhibits Ras signaling for adaptation and long-range chemotaxis
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PNAS Plus: GPCR-controlled membrane recruitment of negative regulator C2GAP1 locally inhibits Ras signaling for adaptation and long-range chemotaxis

机译:PNAS Plus:GPCR控制的负调节剂C2GAP1的膜募集局部抑制Ras信号转导以适应和长期趋化

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摘要

Eukaryotic cells chemotax in a wide range of chemoattractant concentration gradients, and thus need inhibitory processes that terminate cell responses to reach adaptation while maintaining sensitivity to higher-concentration stimuli. However, the molecular mechanisms underlying inhibitory processes are still poorly understood. Here, we reveal a locally controlled inhibitory process in a GPCR-mediated signaling network for chemotaxis in Dictyostelium discoideum. We identified a negative regulator of Ras signaling, C2GAP1, which localizes at the leading edge of chemotaxing cells and is activated by and essential for GPCR-mediated Ras signaling. We show that both C2 and GAP domains are required for the membrane targeting of C2GAP1, and that GPCR-triggered Ras activation is necessary to recruit C2GAP1 from the cytosol and retains it on the membrane to locally inhibit Ras signaling. C2GAP1-deficient c2gapA cells have altered Ras activation that results in impaired gradient sensing, excessive polymerization of F actin, and subsequent defective chemotaxis. Remarkably, these cellular defects of c2gapA cells are chemoattractant concentration dependent. Thus, we have uncovered an inhibitory mechanism required for adaptation and long-range chemotaxis.
机译:真核细胞在广泛的化学吸引剂浓度梯度中具有化学趋化作用,因此需要抑制过程终止细胞反应以达到适应性,同时保持对更高浓度刺激的敏感性。但是,抑制过程的分子机制仍知之甚少。在这里,我们揭示了盘基网柄菌的趋化性的GPCR介导的信号网络中的局部控制抑制过程。我们确定了Ras信号的负调控因子C2GAP1,它位于趋化细胞的前沿,并由GPCR介导的Ras信号激活并对其至关重要。我们显示C2和GAP域都需要针对C2GAP1的膜靶向,并且GPCR触发的Ras激活对于从细胞质中募集C2GAP1并将其保留在膜上以局部抑制Ras信号传导是必要的。缺少C2GAP1的c2gapA -细胞已改变了Ras激活,导致梯度感测受损,F肌动蛋白过度聚合以及随后的趋化性缺陷。值得注意的是,这些c2gapA -细胞的细胞缺陷是化学吸引剂浓度依赖性的。因此,我们发现了适应和远距离趋化性所需的抑制机制。

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