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4E-BP functions as a metabolic brake used under stress conditions but not during normal growth

机译:4E-BP用作在压力条件下使用的代谢制动器但在正常生长过程中不使用

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摘要

4E-BP is an important regulator of overall translation levels in cells. By binding eIF4E, 4E-BP impairs recruitment of the 40S ribosomal subunit to the cap structure present at the 5′-end of all eukaryotic cellular mRNAs. 4E-BP activity is controlled by TOR (Target of Rapamycin). 4E-BP has been studied extensively in cell culture; however, the biological role of 4E-BP in developing organisms is unclear to date. Since TOR has been shown to control tissue growth during animal development, 4E-BP has also been assumed to serve as a growth regulator. Here, we study the relevance of 4E-BP function for organismal development, and present evidence for an alternate view. We show that 4E-BP strongly affects fat metabolism in Drosophila. We suggest that 4E-BP works as a metabolic brake that is activated under conditions of environmental stress to control fat metabolism. 4E-BP mutants lack this regulation, reducing their ability to survive under unfavorable conditions.
机译:4E-BP是细胞整体翻译水平的重要调节剂。通过结合eIF4E,4E-BP会损害40S核糖体亚基向所有真核细胞mRNA 5'端存在的帽结构的募集。 4E-BP活性受TOR(雷帕霉素的靶标)控制。 4E-BP已在细胞培养中进行了广泛研究;然而,迄今为止尚不清楚4E-BP在发育中的生物中的生物学作用。由于已证明TOR可控制动物发育过程中的组织生长,因此也假定4E-BP可作为生长调节剂。在这里,我们研究了4E-BP功能与机体发育的相关性,并提出了另一种观点的证据。我们显示4E-BP强烈影响果蝇中的脂肪代谢。我们建议4E-BP作为代谢制动器,在环境压力条件下被激活以控制脂肪代谢。 4E-BP突变体缺乏这种调节,降低了它们在不利条件下生存的能力。

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