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Neuronal inhibition of the autophagy nucleation complex extends life span in post-reproductive C. elegans

机译:自噬成核复合物的神经元抑制作用延长了秀丽隐杆线虫的寿命

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摘要

Autophagy is a ubiquitous catabolic process that causes cellular bulk degradation of cytoplasmic components and is generally associated with positive effects on health and longevity. Inactivation of autophagy has been linked with detrimental effects on cells and organisms. The antagonistic pleiotropy theory postulates that some fitness-promoting genes during youth are harmful during aging. On this basis, we examined genes mediating post-reproductive longevity using an RNAi screen. From this screen, we identified 30 novel regulators of post-reproductive longevity, including pha-4. Through downstream analysis of pha-4, we identified that the inactivation of genes governing the early stages of autophagy up until the stage of vesicle nucleation, such as bec-1, strongly extend both life span and health span. Furthermore, our data demonstrate that the improvements in health and longevity are mediated through the neurons, resulting in reduced neurodegeneration and sarcopenia. We propose that autophagy switches from advantageous to harmful in the context of an age-associated dysfunction.
机译:自噬是一种普遍存在的分解代谢过程,其引起细胞质组分的细胞大量降解,并且通常对健康和长寿产生积极影响。自噬的失活与对细胞和生物体的有害作用有关。对抗性多效性理论假设青年时期某些促进健康的基因在衰老过程中是有害的。在此基础上,我们使用RNAi筛选检查了介导生殖后寿命的基因。从这个屏幕上,我们确定了30种新型的生殖后寿命调节因子,包括pha-4。通过对pha-4的下游分析,我们确定了控制自噬早期直至囊泡成核阶段的基因的失活,例如bec-1,极大地延长了寿命和健康期。此外,我们的数据表明,健康和长寿的改善是通过神经元介导的,从而导致神经变性和肌肉减少症减少。我们提出,在与年龄相关的功能障碍的情况下,自噬会从有益转变为有害。

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