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Selective regulation of clathrin-mediated epidermal growth factor receptor signaling and endocytosis by phospholipase C and calcium

机译:磷脂酶C和钙的克拉辛介导的表皮生长因子受体信号和内吞作用的选择性调节

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Clathrin-mediated endocytosis is a major regulator of cell-surface protein internalization. Clathrin and other proteins assemble into small invaginating structures at the plasma membrane termed clathrin-coated pits (CCPs) that mediate vesicle formation. In addition, epidermal growth factor receptor (EGFR) signaling is regulated by its accumulation within CCPs. Given the diversity of proteins regulated by clathrin-mediated endocytosis, how this process may distinctly regulate specific receptors is a key question. We examined the selective regulation of clathrin-dependent EGFR signaling and endocytosis. We find that perturbations of phospholipase C gamma 1 (PLC gamma 1), Ca2+, or protein kinase C (PKC) impair clathrin-mediated endocytosis of EGFR, the formation of CCPs harboring EGFR, and EGFR signaling. Each of these manipulations was without effect on the clathrin-mediated endocytosis of transferrin receptor (TfR). EGFR and TfR were recruited to largely distinct clathrin structures. In addition to control of initiation and assembly of CCPs, EGF stimulation also elicited a Ca2+- and PKC-dependent reduction in synaptojanin1 recruitment to clathrin structures, indicating broad control of CCP assembly by Ca2+ signals. Hence EGFR elicits PLC gamma 1-calcium signals to facilitate formation of a subset of CCPs, thus modulating its own signaling and endocytosis. This provides evidence for the versatility of CCPs to control diverse cellular processes.
机译:Clathrin介导的内吞作用是细胞表面蛋白质内化的主要调节因子。 Clathrin和其他蛋白质组装成在介导囊泡形成的夹层涂层凹陷(CCP)的血浆膜中的小型造林结构中。此外,表皮生长因子受体(EGFR)信号传导通过其CCPS内的积累来调节。鉴于通过克拉仑介导的内吞作用调节的蛋白质的多样性,该过程如何明显调节特异性受体是一个关键问题。我们检查了克拉仑依赖EGFR信号传导和内吞作用的选择性调节。我们发现磷脂酶Cγ1(PLCγ1),Ca2 +或蛋白激酶C(PKC)的扰动损害了EGFR的克拉仑介导的内吞作用,含EGFR的CCP和EGFR信号传导。这些操纵中的每一个都没有对Clathrin介导的转铁蛋白受体(TFR)的内吞作用的影响。 EGFR和TFR被招募到很大程度上不同的克拉氏蛋白结构。除了控制CCP的启动和组装之外,EGF刺激还引发了Synaptojanin1募集的Ca2 +和PKC依赖性还原给Clathrin结构,表明CCP组件通过CA2 +信号进行了广泛的控制。因此,EGFR引发PLCγ1-钙信号以促进形成CCP的子集,从而调节其自身的信号传导和内吞作用。这提供了CCPS控制各种细胞过程的多功能性的证据。

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