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An archaeal RNA binding protein FAU-1 is a novel ribonuclease related to rRNA stability in Pyrococcus and Thermococcus

机译:一种古细菌RNA结合蛋白FAU-1是一种新型的核糖核酸酶与火球菌和嗜热球菌中的rRNA稳定性有关。

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摘要

Ribosome biogenesis and turnover are processes necessary for cell viability and proliferation, and many kinds of proteins are known to regulate these processes. However, many questions still remain, especially in the Archaea. Generally, several ribonucleases are required to process precursor rRNAs to their mature forms, and to degrade rRNAs for quality control. Here, we found that FAU-1, which is known to be an RNA binding protein, possesses an RNase activity against precursor 5S rRNA derived from P. furiosus and T. kodakarensis in the order Thermococcales in vitro. An in vitro analysis revealed that UA sequences in the upstream of 5S rRNA were preferentially degraded by addition of FAU-1. Moreover, a fau-1 gene deletion mutant of T. kodakarensis showed a delay of exponential phase, reduction of maximum cell number and significant changes in the nucleotide sequence lengths of its 5S, 16S, and 23S rRNAs in early exponential phase. Our results suggest that FAU-1 is a potential RNase involved in rRNA stability through maturation and/or degradation processes.
机译:核糖体的生物发生和更新是细胞活力和增殖所必需的过程,并且已知多种蛋白质可调节这些过程。但是,仍然存在许多问题,尤其是在古细菌中。通常,需要几种核糖核酸酶才能将前体rRNA加工成其成熟形式,并降解rRNA以进行质量控制。在这里,我们发现FAU-1(已知是一种RNA结合蛋白)在体外具有对源自狂热假单胞菌和柯达卡斯氏菌的5S rRNA前体的RNase活性。体外分析显示,通过添加FAU-1,优先降解5S rRNA上游的UA序列。此外,T。kodakarensis的fau-1基因缺失突变体显示出指数期延迟,最大细胞数量减少以及其5S,16S和23S rRNA的核苷酸序列长度在指数初期的显着变化。我们的结果表明,FAU-1是通过成熟和/或降解过程参与rRNA稳定性的潜在RNase。

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