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首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >dTBC1D7 regulates systemic growth independently of TSC through insulin signaling
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dTBC1D7 regulates systemic growth independently of TSC through insulin signaling

机译:DTBC1D7通过胰岛素信号传导来调节独立于TSC的全身增长

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摘要

The insulin signaling pathway plays key roles in systemic growth. TBC1D7 has recently been identified as the third subunit of the tuberous sclerosis complex (TSC), a negative regulator of cell growth. Here, we used Drosophila as a model system to dissect the physiological function of TBC1D7 in vivo. In mutants lacking TBC1D7, cell and organ growth were promoted, and TBC1D7 limited cell growth in a cell-nonautonomous and TSC-independent manner. TBC1D7 is specifically expressed in insulin-producing cells in the fly brain and regulated biosynthesis and release of insulin-like peptide 2, leading to systemic growth. Furthermore, animals carrying the dTBC1D7 mutation were hypoglycemic, short-lived, and sensitive to oxidative stress. Our findings provide new insights into the physiological function of TBC1D7 in the systemic control of growth, as well as insights into human disorders caused by TBC1D7 mutation.
机译:胰岛素信号传导途径在全身生长中起着关键作用。 TBC1D7最近已被鉴定为结核硬化复合体(TSC)的第三个亚基,一种细胞生长的负调节剂。在这里,我们使用果蝇作为模型系统来描述体内TBC1D7的生理功能。在缺乏TBC1D7的突变体中,促进了细胞和器官生长,并且TBC1D7在细胞 - 非编程和TSC-无关的方式中的细胞生长。 TBC1D7特异性地在血小胰岛素产生的细胞中表达,并调节生物合成和释放胰岛素样肽2,导致全身生长。此外,携带DTBC1D7突变的动物是低血糖,短暂的,对氧化应激敏感的。我们的调查结果为TBC1D7的生理功能提供了新的洞察,在系统控制增长中,以及由TBC1D7突变引起的人类疾病的见解。

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