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mTORC1 in the Paneth cell niche couples intestinal stem cell function to calorie intake

机译:在paneth细胞生态位中的mTORC1将肠干细胞功能与卡路里摄入相结合

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摘要

How adult tissue stem and niche cells respond to the nutritional state of an organism is not well understood. Here we find that Paneth cells, a key constituent of the mammalian intestinal stem-cell (ISC) niche, augment stem-cell function in response to calorie restriction. Calorie restriction acts by reducing mechanistic target of rapamycin complex 1 (mTORC1) signalling in Paneth cells, and the ISC-enhancing effects of calorie restriction can be mimicked by rapamycin. Calorie intake regulates mTORC1 in Paneth cells, but not ISCs, and forced activation of mTORC1 in Paneth cells during calorie restriction abolishes the ISC-augmenting effects of the niche. Finally, increased expression of bone stromal antigen 1 (Bst1) in Paneth cells—an ectoenzyme that produces the paracrine factor cyclic ADP ribose—mediates the effects of calorie restriction and rapamycin on ISC function. Our findings establish that mTORC1 non-cell-autonomously regulates stem-cell self-renewal, and highlight a significant role of the mammalian intestinal niche in coupling stem-cell function to organismal physiology.
机译:成年组织干细胞和小生境细胞如何响应生物体的营养状态尚不清楚。在这里,我们发现Paneth细胞是哺乳动物肠道干细胞(ISC)生态位的关键组成部分,可响应卡路里限制而增强干细胞功能。卡路里限制通过减少Paneth细胞中雷帕霉素复合物1(mTORC1)信号转导的机制而起作用,雷帕霉素可模仿卡路里限制的ISC增强作用。卡路里摄入量调节Paneth细胞中的mTORC1,但不调节ISC,并且在限制卡路里的过程中Paneth细胞中mTORC1的强制激活消除了利基的ISC增强作用。最后,Paneth细胞(一种产生旁分泌因子环状ADP核糖的外在酶)中骨基质抗原1(Bst1)的表达增加,介导了热量限制和雷帕霉素对ISC功能的影响。我们的发现建立了mTORC1非细胞自主调节干细胞自我更新的作用,并突出了哺乳动物肠道生态位在干细胞功能与机体生理耦合中的重要作用。

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