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RNA helicases: Diverse roles in prokaryotic response to abiotic stress

机译:RNA解旋酶:在对非生物胁迫的原核反应中的多种作用

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摘要

Similar to proteins, RNA molecules must fold into the correct conformation and associate with protein complexes in order to be functional within a cell. RNA helicases rearrange RNA secondary structure and RNA-protein interactions in an ATP-dependent reaction, performing crucial functions in all aspects of RNA metabolism. In prokaryotes, RNA helicase activity is associated with roles in housekeeping functions including RNA turnover, ribosome biogenesis, translation and small RNA metabolism. In addition, RNA helicase expression and/or activity are frequently altered during cellular response to abiotic stress, implying they perform defined roles during cellular adaptation to changes in the growth environment. Specifically, RNA helicases contribute to the formation of cold-adapted ribosomes and RNA degradosomes, implying a role in alleviation of RNA secondary structure stabilization at low temperature. A common emerging theme involves RNA helicases acting as scaffolds for protein-protein interaction and functioning as molecular clamps, holding RNA-protein complexes in specific conformations. This review highlights recent advances in DEA D-box RNA helicase association with cellular response to abiotic stress in prokaryotes.
机译:与蛋白质相似,RNA分子必须折叠成正确的构象并与蛋白质复合物缔合,才能在细胞内发挥作用。 RNA解旋酶在ATP依赖的反应中重新排列RNA二级结构和RNA-蛋白质相互作用,在RNA代谢的所有方面都发挥关键作用。在原核生物中,RNA解旋酶活性与管家功能(包括RNA周转,核糖体生物发生,翻译和小RNA代谢)中的作用有关。此外,RNA解旋酶的表达和/或活性在细胞对非生物胁迫的反应中经常发生变化,这意味着它们在细胞适应生长环境变化的过程中起着确定的作用。具体而言,RNA解旋酶有助于形成冷适应的核糖体和RNA降解体,这暗示着在低温下减轻RNA二级结构稳定性的作用。一个常见的新兴主题涉及RNA解旋酶,充当蛋白质-蛋白质相互作用的支架并起分子钳的作用,将RNA-蛋白质复合物保持特定构象。这篇综述着重介绍了DEA D-box RNA解旋酶与原核生物对非生物胁迫的细胞反应相关的最新进展。

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