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首页> 外文期刊>Journal of molecular cell biology >Oxygen sufficiency controls TOP mRNA translation via the TSC-Rheb-mTOR pathway in a 4E-BP-independent manner.
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Oxygen sufficiency controls TOP mRNA translation via the TSC-Rheb-mTOR pathway in a 4E-BP-independent manner.

机译:氧气充足性通过TSC-Rheb-mTOR途径以4E-BP独立的方式控制TOP mRNA的翻译。

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摘要

Cells encountering hypoxic stress conserve resources and energy by downregulating the protein synthesis. Here we demonstrate that one mechanism in this response is the translational repression of TOP mRNAs that encode components of the translational apparatus. This mode of regulation involves TSC and Rheb, as knockout of TSC1 or TSC2 or overexpression of Rheb rescued TOP mRNA translation in oxygen-deprived cells. Stress-induced translational repression of these mRNAs closely correlates with the hypophosphorylated state of 4E-BP, a translational repressor. However, a series of 4E-BP loss- and gain-of-function experiments disprove a cause-and-effect relationship between the phosphorylation status of 4E-BP and the translational repression of TOP mRNAs under oxygen or growth factor deprivation. Furthermore, the repressive effect of anoxia is similar to that attained by the very efficient inhibition of mTOR activity by Torin 1, but much more pronounced than raptor or rictor knockout. Likewise, deficiency of raptor or rictor, even though it mildly downregulated basal translation efficiency of TOP mRNAs, failed to suppress the oxygen-mediated translational activation of TOP mRNAs. Finally, co-knockdown of TIA-1 and TIAR, two RNA-binding proteins previously implicated in translational repression of TOP mRNAs in amino acid-starved cells, failed to relieve TOP mRNA translation under other stress conditions. Thus, the nature of the proximal translational regulator of TOP mRNAs remains elusive.
机译:遇到低氧应激的细胞通过下调蛋白质合成来节省资源和能量。在这里,我们证明了这种应答的一种机制是编码翻译装置组件的TOP mRNA的翻译抑制。这种调节模式涉及TSC和Rheb,因为TSC1或TSC2的敲除或Rheb的过表达在缺氧细胞中拯救了TOP mRNA翻译。应力诱导的这些mRNA的翻译抑制与翻译抑制子4E-BP的低磷酸化状态密切相关。但是,一系列4E-BP功能丧失和获得的实验证明了在氧气或生长因子剥夺下4E-BP的磷酸化状态与TOP mRNA的翻译抑制之间的因果关系。此外,缺氧的抑制作用类似于都灵1对mTOR活性的非常有效的抑制,但比猛禽或蓖麻敲除要明显得多。同样,猛禽或蓖麻的缺乏,即使它轻度下调了TOP mRNA的基础翻译效率,也未能抑制氧气介导的TOP mRNA的翻译激活。最后,TIA-1和TIAR的共同敲除是两个先前与氨基酸缺乏的细胞中TOP mRNA的翻译抑制有关的RNA结合蛋白,在其他胁迫条件下未能缓解TOP mRNA的翻译。因此,TOP mRNA的近端翻译调节器的性质仍然难以捉摸。

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