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Dysfunctional peroxisomes compromise gut structure and host defense by increased cell death and Tor-dependent autophagy

机译:功能障碍过氧化血剂损害肠道结构和宿主防御通过增加的细胞死亡和依赖的自噬

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摘要

The gut has a central role in digestion and nutrient absorption, but it also serves in defending against pathogens, engages in mutually beneficial interactions with commensals, and is a major source of endocrine signals. Gut homeostasis is necessary for organismal health and changes to the gut are associated with conditions like obesity and diabetes and inflammatory illnesses like Crohn's disease. We report that peroxisomes, organelles involved in lipid metabolism and redox balance, are required to maintain gut epithelium homeostasis and renewal in Drosophila and for survival and development of the organism. Dysfunctional peroxisomes in gut epithelial cells activate Tor kinase-dependent autophagy that increases cell death and epithelial instability, which ultimately alter the composition of the intestinal microbiota, compromise immune pathways in the gut in response to infection, and affect organismal survival. Peroxisomes in the gut effectively function as hubs that coordinate responses from stress, metabolic, and immune signaling pathways to maintain enteric health and the functionality of the gut-microbe interface.
机译:该肠道在消化和营养吸收中具有核心作用,但它也用于防止病原体,与共生相互有益的相互作用,是内分泌信号的主要来源。 Gut稳态是有机体健康的必要条件,并且肠道的变化与肥胖症和糖尿病等条件相关,如克罗恩病等炎症疾病。我们报告过氧化血,参与脂质代谢和氧化还原平衡的细胞器需要在果蝇中保持肠道上皮稳态和更新,并用于生存和发展的生物体。肠道上皮细胞中的功能失调过氧化物激活依赖性激酶依赖性自噬,增加细胞死亡和上皮不稳定性,最终改变肠道微生物群的组成,响应感染而影响肠道中的免疫途径,并影响有机体存活。肠道中的过氧化血剂有效地用作集线器,其坐标与应激,代谢和免疫信号传导途径的反应,以保持肠道健康和肠微生物界面的功能。

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