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Hedgehog 和胰岛素信号的拮抗作用平衡增殖和自噬以决定卵泡干细胞寿命。

Opposing Action of Hedgehog and Insulin Signaling Balances Proliferation and Autophagy to Determine Follicle Stem Cell Lifespan.

机构信息

Department of Molecular Therapeutics, Fox Chase Cancer Center, 333 Cottman Avenue, Philadelphia, PA 19111, USA; Department of Biochemistry and Molecular Biology, Drexel University College of Medicine, Philadelphia, PA 19111, USA.

Department of Molecular Therapeutics, Fox Chase Cancer Center, 333 Cottman Avenue, Philadelphia, PA 19111, USA.

出版信息

Dev Cell. 2018 Sep 24;46(6):720-734.e6. doi: 10.1016/j.devcel.2018.08.008. Epub 2018 Sep 6.

Abstract

Egg production declines with age in many species, a process linked with stem cell loss. Diet-dependent signaling has emerged as critical for stem cell maintenance during aging. Follicle stem cells (FSCs) in the Drosophila ovary are exquisitely responsive to diet-induced signals including Hedgehog (Hh) and insulin-IGF signaling (IIS), entering quiescence in the absence of nutrients and initiating proliferation rapidly upon feeding. Although highly proliferative FSCs generally exhibit an extended lifespan, we find that constitutive Hh signaling drives FSC loss and premature sterility despite high proliferative rates. This occurs due to Hh-mediated induction of autophagy in FSCs via a Ptc-dependent, Smo-independent mechanism. Hh-dependent autophagy increases during aging, triggering FSC loss and consequent reproductive arrest. IIS is necessary and sufficient to suppress Hh-induced autophagy, promoting a stable proliferative state. These results suggest that opposing action of diet-responsive IIS and Hh signals determine reproductive lifespan by modulating the proliferation-autophagy balance in FSCs during aging.

摘要

在许多物种中,卵子的产生随着年龄的增长而下降,这一过程与干细胞的损失有关。饮食依赖的信号传递已成为衰老过程中干细胞维持的关键。果蝇卵巢中的卵泡干细胞(FSCs)对饮食诱导的信号非常敏感,包括 Hedgehog(Hh)和胰岛素-IGF 信号(IIS),在缺乏营养的情况下进入静止状态,并在进食后迅速开始增殖。尽管高度增殖的 FSCs 通常表现出延长的寿命,但我们发现,尽管增殖率很高,但组成性 Hh 信号会导致 FSC 丢失和过早不育。这是由于 Hh 通过依赖 Ptc、不依赖 Smo 的机制在 FSCs 中诱导自噬。Hh 依赖性自噬在衰老过程中增加,导致 FSC 丢失和随后的生殖停滞。IIS 是必需和充分的,以抑制 Hh 诱导的自噬,促进稳定的增殖状态。这些结果表明,饮食反应性 IIS 和 Hh 信号的拮抗作用通过调节衰老过程中 FSCs 的增殖-自噬平衡来决定生殖寿命。

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本文引用的文献

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Exploring Autophagy in Drosophila.探索果蝇中的自噬现象。
Cells. 2017 Jul 12;6(3):22. doi: 10.3390/cells6030022.
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Hedgehog signalling.刺猬信号通路
Development. 2016 Feb 1;143(3):367-72. doi: 10.1242/dev.120154.
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Interventions to Slow Aging in Humans: Are We Ready?延缓人类衰老的干预措施:我们准备好了吗?
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