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Drosophila Caliban preserves intestinal homeostasis and lifespan through regulating mitochondrial dynamics and redox state in enterocytes

机译:<斜视>果蝇 Caliban通过在肠细胞中调节线粒体动态和氧化还原状态来保护肠道稳态和寿命

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Precise regulation of stem cell activity is crucial for tissue homeostasis. In Drosophila , intestinal stem cells (ISCs) maintain the midgut epithelium and respond to oxidative challenges. However, the connection between intestinal homeostasis and redox signaling remains obscure. Here we find that Caliban (Clbn) functions as a regulator of mitochondrial dynamics in enterocytes (ECs) and is required for intestinal homeostasis. The clbn knock-out flies have a shortened lifespan and lose the intestinal homeostasis. Clbn is highly expressed and localizes to the outer membrane of mitochondria in ECs. Mechanically, Clbn mediates mitochondrial dynamics in ECs and removal of clbn leads to mitochondrial fragmentation, accumulation of reactive oxygen species, ECs damage, activation of JNK and JAK-STAT signaling pathways. Moreover, multiple mitochondria-related genes are differentially expressed between wild-type and clbn mutated flies by a whole-genome transcriptional profiling. Furthermore, loss of clbn promotes tumor growth in gut generated by activated Ras in intestinal progenitor cells. Our findings reveal an EC-specific function of Clbn in regulating mitochondrial dynamics, and provide new insight into the functional link among mitochondrial redox modulation, tissue homeostasis and longevity.
机译:干细胞活性的精确调节对于组织稳态至关重要。在果蝇中,肠干细胞(ISCs)维持中间肠果上皮,并响应氧化挑战。然而,肠道稳态与氧化还原信号之间的连接仍然模糊不清。在这里,我们发现Caliban(CLBN)用作肠细胞(ECS)中的线粒体动态的调节器,并且是肠道稳态所必需的。 CLBN敲除苍蝇缩短了寿命,失去了肠道稳态。 CLBN高度表达并定位在ECS中线粒体的外膜。机械地,CLBN介导ECS中的线粒体动力学,并除去CLBN导致线粒体破碎,反应性氧,ECS损伤,JNK和JAK-STAT信号传导途径的积累。此外,通过全基因组转录分析,多种线粒体相关基因在野生型和CLBN突变的苍蝇之间差异表达。此外,CLBN的损失促进肠道祖细胞中活化RA产生的肠道中的肿瘤生长。我们的研究结果揭示了CLBN调节线粒体动力学的EC特定功能,并为线粒体氧化还原调制,组织稳态和长寿的功能联系提供了新的洞察力。

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