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MYO6 Regulates Spatial Organization of Signaling Endosomes Driving AKT Activation and Actin Dynamics

机译:MYO6调节驱动AKT活化和肌动蛋白动力学的信号内体的空间组织

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APPL1- and RAB5-positive signaling endosomes play a crucial role in the activation of AKT in response to extracellular stimuli. Myosin VI (MYO6) and two of its cargo adaptor proteins, GIPC and TOM1/TOM1L2, localize to these peripheral endosomes and mediate endosome association with cortical actin filaments. Loss of MYO6 leads to the displacement of these endosomes from the cell cortex and accumulation in the perinuclear space. Depletion of this myosin not only affects endosome positioning, but also induces actin and lipid remodeling consistent with endosome maturation, including accumulation of F-actin and the endosomal lipid PI(3)P. These processes acutely perturb endosome function, as both AKT phosphorylation and RAC-dependent membrane ruffling were markedly reduced by depletion of either APPL1 or MYO6. These results place MYO6 and its binding partners at a central nexus in cellular signaling linking actin dynamics at the cell surface and endosomal signaling in the cell cortex.
机译:APPL1和RAB5阳性信号内体在响应细胞外刺激的AKT激活中起关键作用。肌球蛋白VI(MYO6)及其两个货物衔接蛋白GIPC和TOM1 / TOM1L2位于这些外围内体并介导内体与皮质肌动蛋白丝的结合。 MYO6的丢失导致这些内体从细胞皮层中移位并在核周空间中积累。此肌球蛋白的消耗不仅影响内体的定位,而且还诱导肌动蛋白和脂质重塑与内体成熟一致,包括F-肌动蛋白和内体脂质PI(3)P的积累。这些过程会严重扰乱内体功能,因为APPL1或MYO6的消耗会显着减少AKT磷酸化和RAC依赖性膜起皱。这些结果将MYO6及其结合伴侣置于细胞信号传导中的中心联系,从而将肌动蛋白在细胞表面的动态性与内质体信号传导在细胞皮质中联系起来。

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