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Dual TORCs driven and B56 orchestrated signaling network guides eukaryotic cell migration

机译:双TORC驱动和B56协调的信号网络指导真核细胞迁移

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摘要

Different types of eukaryotic cells may adopt seemingly distinct modes of directional cell migration. However, several core aspects are regarded common whether the movement is either ameoboidal or mesenchymal. The region of cells facing the attractive signal is often termed leading edge where lamellipodial structures dominates and the other end of the cell called rear end is often mediating cytoskeletal F-actin contraction involving Myosin-II. Dynamic remodeling of cell-to-matrix adhesion involving integrin is also evident in many types of migrating cells. All these three aspects of cell migration are significantly affected by signaling networks of TorC2, TorC1, and PP2A/B56. Here we review the current views of the mechanistic understanding of these regulatory signaling networks and how these networks affect eukaryotic cell migration.
机译:不同类型的真核细胞可能会采用看似不同的定向细胞迁移模式。但是,无论运动是非变形的还是间充质的,几个核心方面被认为是共同的。面对吸引信号的细胞区域通常被称为前缘,其中片状脂质体结构占主导,而称为后端的细胞另一端通常介导涉及肌球蛋白II的细胞骨架F-肌动蛋白收缩。在许多类型的迁移细胞中,涉及整联蛋白的细胞与基质粘附的动态重塑也很明显。细胞迁移的所有这三个方面都受到TorC2,TorC1和PP2A / B56的信号网络的显着影响。在这里,我们审查对这些调节信号网络的机械理解的当前观点以及这些网络如何影响真核细胞迁移。

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