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JNK modifies neuronal metabolism to promote proteostasis and longevity

机译:JNK改变神经元的新陈代谢促进蛋白质稳定和长寿

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摘要

Aging is associated with a progressive loss of tissue and metabolic homeostasis. This loss can be delayed by single‐gene perturbations, increasing lifespan. How such perturbations affect metabolic and proteostatic networks to extend lifespan remains unclear. Here, we address this question by comprehensively characterizing age‐related changes in protein turnover rates in the Drosophila brain, as well as changes in the neuronal metabolome, transcriptome, and carbon flux in long‐lived animals with elevated Jun‐N‐terminal Kinase signaling. We find that these animals exhibit a delayed age‐related decline in protein turnover rates, as well as decreased steady‐state neuronal glucose‐6‐phosphate levels and elevated carbon flux into the pentose phosphate pathway due to the induction of glucose‐6‐phosphate dehydrogenase (G6PD). Over‐expressing G6PD in neurons is sufficient to phenocopy these metabolic and proteostatic changes, as well as extend lifespan. Our study identifies a link between metabolic changes and improved proteostasis in neurons that contributes to the lifespan extension in long‐lived mutants.
机译:衰老与组织的逐渐丧失和代谢稳态有关。这种损失可以通过单基因扰动来延迟,从而延长使用寿命。目前尚不清楚这种扰动如何影响代谢和蛋白稳定网络以延长寿命。在这里,我们通过全面表征果蝇大脑中蛋白质周转率与年龄相关的变化,以及具有Jun-N-末端激酶信号转导的长寿动物中神经元代谢组,转录组和碳通量的变化,来解决这个问题。 。我们发现这些动物表现出与年龄相关的蛋白质更新率下降的延迟,以及由于诱导了6-磷酸葡萄糖而降低了稳态神经元葡萄糖-6-磷酸水平和进入戊糖磷酸途径的碳通量。脱氢酶(G6PD)。在神经元中过表达G6PD足以表型化这些代谢和蛋白调节变化,并延长寿命。我们的研究确定了代谢变化与神经元蛋白变性之间的联系,这有助于长寿命突变体的寿命延长。

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