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RNA degradation by the plant RNA exosome involves both phosphorolytic and hydrolytic activities

机译:植物RNA外来体对RNA的降解涉及磷酸水解和水解活性

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摘要

The RNA exosome provides eukaryotic cells with an essential 3′–5′ exoribonucleolytic activity, which processes or eliminates many classes of RNAs. Its nine-subunit core (Exo9) is structurally related to prokaryotic phosphorolytic exoribonucleases. Yet, yeast and animal Exo9s have lost the primordial phosphorolytic capacity and rely instead on associated hydrolytic ribonucleases for catalytic activity. Here, we demonstrate that Arabidopsis Exo9 has retained a distributive phosphorolytic activity, which contributes to rRNA maturation processes, the hallmark of exosome function. High-density mapping of 3′ extremities of rRNA maturation intermediates reveals the intricate interplay between three exoribonucleolytic activities coordinated by the plant exosome. Interestingly, the analysis of RRP41 protein diversity across eukaryotes suggests that Exo9’s intrinsic activity operates throughout the green lineage, and possibly in some earlier-branching non-plant eukaryotes. Our results reveal a remarkable evolutionary variation of this essential RNA degradation machine in eukaryotes.
机译:RNA外泌体为真核细胞提供了必需的3'-5'外核糖核酸外切活性,该活性可处理或消除许多类RNA。它的九个亚基核心(Exo9)在结构上与原核磷酸化核糖核酸外切酶有关。然而,酵母和动物Exo9s失去了原始的磷酸分解能力,取而代之的是依靠相关的水解核糖核酸酶来实现催化活性。在这里,我们证明拟南芥Exo9保留了分布式的磷酸分解活性,这有助于rRNA成熟过程,外泌体功能的标志。 rRNA成熟中间体的3'末端的高密度图谱揭示了植物外泌体协调的三种外核糖核酸分解活性之间的复杂相互作用。有趣的是,对跨真核生物的RRP41蛋白多样性的分析表明,Exo9的内在活性贯穿整个绿色谱系,并且可能在一些较早分支的非植物真核生物中起作用。我们的结果揭示了真核生物中这种必需的RNA降解机器的显着进化变化。

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