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Regulation of Dendritic Morphogenesis by Ras–PI3K–Akt–mTOR and Ras–MAPK Signaling Pathways

机译:Ras–PI3K–Akt–mTOR和Ras–MAPK信号通路对树突形态发生的调控

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摘要

Dendritic arborization and spine formation are critical for the functioning of neurons. Although many proteins have been identified recently as regulators of dendritic morphogenesis, the intracellular signaling pathways that control these processes are not well understood. Here we report that the Ras–phosphatidylinositol 3-kinase (PI3K)–Akt–mammalian target of rapamycin (mTOR) signaling pathway plays pivotal roles in the regulation of many aspects of dendrite formation. Whereas the PI3K–Akt–mTOR pathway alone controlled soma and dendrite size, a coordinated activation together with the Ras-mitogen-activated protein kinase signaling pathway was required for increasing dendritic complexity. Chronic inhibition of PI3K or mTOR reduced soma and dendrite size and dendritic complexity, as well as density of dendritic filopodia and spines, whereas a short-term inhibition promoted the formation of mushroom-shaped spines on cells expressing constitutively active mutants of Ras, PI3K, or Akt, or treated with the upstream activator BDNF. Together, our data underscore the central role of a spatiotemporally regulated key cell survival and growth pathway on trophic regulation of the coordinated development of dendrite size and shape.
机译:树突状乔化和脊柱形成对于神经元的功能至关重要。尽管最近已鉴定出许多蛋白质作为树突形态发生的调节剂,但控制这些过程的细胞内信号传导途径尚不十分清楚。在这里,我们报道Ras-磷脂酰肌醇3-激酶(PI3K)-Akt-哺乳动物雷帕霉素(mTOR)信号通路的靶标在调节枝晶形成的许多方面起着关键作用。 PI3K–Akt–mTOR途径单独控制着体和树突的大小,而增加Ras-促分裂原活化的蛋白激酶信号传导途径需要协同激活才能增加树突的复杂性。长期抑制PI3K或mTOR可降低体细胞和树突的大小以及树突的复杂性,以及树突状丝状伪足和棘的密度,而短期抑制则促进了表达Ras,PI3K组成型活性突变体的细胞上蘑菇形棘的形成。或Akt,或用上游活化剂BDNF处理。总之,我们的数据强调了时空调节的关键细胞存活和生长途径在营养调节枝晶大小和形状的协调调节中的核心作用。

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