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首页> 外文期刊>RNA >DAZAP1, an RNA-binding protein required for development and spermatogenesis, can regulate mRNA translation.
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DAZAP1, an RNA-binding protein required for development and spermatogenesis, can regulate mRNA translation.

机译:DAZAP1是发育和精子发生所需的一种RNA结合蛋白,可以调节mRNA的翻译。

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摘要

DAZ-associated protein 1 (DAZAP1) is an RNA-binding protein required for normal growth, development, and fertility in mice. However, its molecular functions have not been elucidated. Here we find that Xenopus laevis and human DAZAP1, which are each expressed as short and long forms, act as mRNA-specific activators of translation in a manner that is sensitive to the number of binding sites present within the 3' UTR. Domain mapping suggests that this conserved function is mainly associated with C-terminal regions of DAZAP1. Interestingly, we find that the expression of xDAZAP1 and its polysome association are developmentally controlled, the latter suggesting that the translational activator function of DAZAP1 is regulated. However, ERK phosphorylation of DAZAP1, which can alter protein interactions with its C terminus, does not play a role in regulating its ability to participate in translational complexes. Since relatively few mRNA-specific activators have been identified, we explored the mechanism by which DAZAP1 activates translation. By utilizing reporter mRNAs with internal ribosome entry sites, we establish that DAZAP1 stimulates translation initiation. Importantly, this activity is not dependent on the recognition of the 5' cap by initiation factors, showing that it functions downstream from this frequently regulated event, but is modulated by changes in the adenylation status of mRNAs. This suggests a function in the formation of "end-to-end" complexes, which are important for efficient initiation, which we show to be independent of a direct interaction with the bridging protein eIF4G.
机译:DAZ相关蛋白1(DAZAP1)是正常生长,发育和小鼠受精所需的RNA结合蛋白。然而,其分子功能尚未阐明。在这里,我们发现非洲爪蟾和人类DAZAP1分别以短和长形式表达,它们以对3'UTR中存在的结合位点敏感的方式充当翻译的mRNA特异性激活剂。域映射表明,这种保守功能主要与DAZAP1的C端区域有关。有趣的是,我们发现xDAZAP1的表达及其多聚体缔合受到发育控制,后者表明DAZAP1的翻译激活功能受到调节。但是,DAZAP1的ERK磷酸化可改变蛋白质与其C末端的相互作用,但在调节其参与翻译复合物的能力方面不起作用。由于已经确定了相对较少的mRNA特异性激活子,我们探讨了DAZAP1激活翻译的机制。通过利用具有内部核糖体进入位点的报告基因mRNA,我们确定DAZAP1刺激翻译起始。重要的是,该活性不依赖于起始因子对5'帽的识别,表明其在这种经常调节的事件的下游起作用,但受mRNA腺苷酸状态变化的调节。这表明“端对端”复合物的形成中的功能,这对于有效的启动很重要,我们证明了它独立于与桥接蛋白eIF4G的直接相互作用。

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