Rab27在果蝇寿命和神经保护中的细胞自主和非自主功能。

IF 14.3
Chia-Heng Hsu, Yi-Jhan Li, Ting-Ni Guo, Fei-Yang Tzou, Cheng-Li Hong, Chin-Hsien Lin, Shu-Yi Huang, Chih-Chiang Chan
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引用次数: 0

摘要

随着年龄的增长,自噬能力下降,导致蛋白质平衡恶化,导致神经元死亡。Rab27作为大自噬/自噬降解和胞吐的囊泡调节剂。果蝇αβp脑神经元中Rab27的缺失可以延长寿命,这表明Rab27在神经元中的作用和全身性作用。为了了解潜在的机制,我们对Rab27的细胞自主和非自主功能进行了表征。Rab27的表达在中年增加,提供了一个时间操纵窗口。在该时间点耗尽Rab27可激活自噬并维持神经元的维持。在机体水平上,Rab27 KO蝇体中Egfr(表皮生长因子受体)配体减少,Akt激酶低磷酸化,表明存在广泛的信号级联。最后,Rab27 KO改善了果蝇α-突触核蛋白病模型的神经毒性。总之,我们的研究结果强调了神经元自噬调节因子对神经元维持和延长寿命至关重要。简称Atg自噬相关基因;EGF:表皮生长因子;Egfr:表皮生长因子受体;foxo:叉头箱,子组po;mTor:雷帕霉素的机制靶点;MTOR:雷帕霉素的机制靶点;spi:猎犬。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The cell autonomous and non-autonomous functions of Rab27 in longevity and neuroprotection in Drosophila.

Autophagic decline accompanies age and causes a deterioration in proteostasis, rendering neuronal demise. Rab27 functions as a vesicle regulator for macroautophagic/autophagic degradation and exocytosis. Loss of Drosophila Rab27 in αβp brain neurons enhances longevity, underscoring its neuronal role and systemic effect. To understand the underlying mechanisms, we characterized the cell autonomous and non-autonomous functions of Rab27. Rab27 expression increased in midlife, providing a temporal manipulation window. Depleting Rab27 at that timepoint activated autophagy and sustained neuronal maintenance. At the organismic level, Egfr (Epidermal growth factor receptor) ligand was reduced and Akt kinase underphosphorylated in the Rab27 KO fly body, indicating a widespread signaling cascade. Finally, Rab27 KO ameliorates the neurotoxicity in a fly α-synucleinopathy model. Altogether, our results highlight a neuronal autophagy regulator exerting systemic effects that are crucial for neuronal maintenance and improving longevity.Abbreviation: Atg autophagy-related genes;EGF: epidermal growth factor; Egfr: Epidermal growth factor receptor;EGFR: epidermal growth factor receptor; foxo: forkhead box, sub-groupO; mTor: mechanistic target of rapamycin; MTOR: mechanistic target ofrapamycin; spi: spitz.

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