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Axon Degeneration Gated by Retrograde Activation of Somatic Pro-apoptotic Signaling

机译:轴突变性门控逆行激活体细胞凋亡信号。

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摘要

During development, sensory axons compete for limiting neurotrophic support, and local neurotrophin insufficiency triggers caspase-dependent axon degeneration. The signaling driving axon degeneration upon local deprivation is proposed to reside within axons. Our results instead support a model in which, despite the apoptotic machinery being present in axons, the cell body is an active participant in gating axonal caspase activation and axon degeneration. Loss of trophic support in axons initiates retrograde activation of a somatic pro-apoptotic pathway, which, in turn, is required for distal axon degeneration via an anterograde pro-degenerative factor. At a molecular level, the cell body is the convergence point of two signaling pathways whose integrated action drives upregulation of pro-apoptotic Puma, which, unexpectedly, is confined to the cell body. Puma then overcomes inhibition by pro-survival Bcl-xL and Bcl-w and initiates the anterograde prodegenerative program, highlighting the role of the cell body as an arbiter of large-scale axon removal.
机译:在发育过程中,感觉轴突竞争限制神经营养的支持,局部神经营养蛋白不足会触发胱天蛋白酶依赖性轴突变性。建议在局部剥夺时驱动轴突变性的信号转导位于轴突内。我们的结果反而支持了一个模型,在该模型中,尽管轴突中存在凋亡机制,但细胞体仍是门控轴突半胱天冬酶激活和轴突变性的积极参与者。轴突中营养支持的丧失引发了体细胞促凋亡途径的逆行激活,继而,这是通过顺行性退变性因子使远端轴突变性所必需的。在分子水平上,细胞体是两条信号通路的融合点,它们的整合作用驱动促凋亡的Puma的上调,而Puma出乎意料地局限于细胞体内。然后,彪马克服了生存前的Bcl-xL和Bcl-w的抑制作用,并启动了顺行性生殖程序,突出了细胞体作为大规模轴突去除仲裁者的作用。

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