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IRSp53 coordinates AMPK and 14-3-3 signaling to regulate filopodia dynamics and directed cell migration

机译:IRSP53坐标AMPK和14-3-3信令,以调节Filopopodia动态和定向细胞迁移

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Filopodia are actin-filled membrane protrusions that play essential roles in cell motility and cell-cell communication and act as precursors of dendritic spines. IRSp53 is an essential regulator of filopodia formation, which couples Rho-GTPase signaling to actin cytoskeleton and membrane remodeling. IRSp53 has three major domains: an N-terminal inverseBAR (I-BAR) domain, a Cdc42-and SH3-binding CRIB-PR domain, and an SH3 domain that binds downstream cytoskeletal effectors. Phosphorylation sites in the region between the CRIB-PR and SH3 domains mediate the binding of 14-3-3. Yet the mechanism by which 14--3-3 regulates filopodia formation and dynamics and its role in cell migration are poorly understood. Here, we show that phosphorylation-dependent inhibition of IRSp53 by 14-3-3 counters activation by Cdc42 and cytoskeletal effectors, resulting in down-regulation of filopodia dynamics and cancer cell migration. In serum-starved cells, increased IRSp53 phosphorylation triggers 14-3-3 binding, which inhibits filopodia formation and dynamics, irrespective of whether IRSp53 is activated by Cdc42 or downstream effectors (Eps8, Ena/VASP). Pharmacological activation or inhibition of AMPK, respectively, increases or decreases the phosphorylation of two of three sites in IRSp53 implicated in 14-3-3 binding. Mutating these phosphorylation sites reverses 14-3-3-dependent inhibition of filopodia dynamics and cancer cell chemotaxis.
机译:Filopodia是含有肌动蛋白填充的膜突起,其在细胞运动和细胞 - 细胞通信中起主要作用,并作为树突刺的前体。 IRSP53是氟化碳含量形成的必要调节因子,其将rho-GTPA酶信号传导至肌瘤细胞骨架和膜重塑。 IRSP53具有三个主要结构域:N末端逆线(I-BAR)结构域,CDC42和SH3结合婴儿床域,以及结合下游细胞骨骼效应的SH3结构域。在婴儿床 - PR和SH3结构域之间的区域中的磷酸化位点介导14-3-3的结合。然而,14--3调节Filopopodia形成和动力学的机制及其在细胞迁移中的作用很差。在这里,我们表明,通过CDC42和细胞骨骼效应的磷酸化依赖性抑制IRSP53依赖于14-3-3次激活,导致丝透过动力学和癌细胞迁移的下调。在血清饥饿的细胞中,增加的IRSP53磷酸化触发14-3-3结合,其抑制箔片形成和动力学,无论IRSP53是否通过CDC42或下游效应器激活(EPS8,ENA / VASP)。分别对AMPK的药理活化或抑制增加或减少IRSP53中两种位点中的两种磷酸化的磷酸化,其具有14-3-3结合。突变这些磷酸化位点反转14-3-3依赖性抑制Filopodia动力学和癌细胞趋化性。

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