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Archaeal/eukaryal RNase P: subunits, functions and RNA diversification. [Review]

机译:古细菌/真核细胞RNase P:亚基,功能和RNA多样化。 [评论]

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摘要

RNase P, a catalytic ribonucleoprotein (RNP), is best known for its role in precursor tRNA processing. Recent discoveries have revealed that eukaryal RNase P is also required for transcription and processing of select non-coding RNAs, thus enmeshing RNase P in an intricate network of machineries required for gene expression. Moreover, the RNase P RNA seems to have been subject to gene duplication, selection and divergence to generate two new catalytic RNPs, RNase MRP and MRP-TERT, which perform novel functions encompassing cell cycle control and stem cell biology. We present new evidence and perspectives on the functional diversification of the RNase P RNA to highlight it as a paradigm for the evolutionary plasticity that underlies the extant broad repertoire of catalytic and unexpected regulatory roles played by RNA-driven RNPs.
机译:RNase P是一种催化核糖核蛋白(RNP),因其在前体tRNA加工中的作用而闻名。最近的发现表明,对于某些非编码RNA的转录和加工,还需要真核RNase P,从而将RNase P嵌入到基因表达所需的复杂机器网络中。此外,RNase P RNA似乎已经受到基因复制,选择和分化的影响,以产生两种新的催化RNP,即RNase MRP和MRP-TERT,它们执行包括细胞周期控制和干细胞生物学在内的新功能。我们提供有关RNase P RNA功能多样化的新证据和观点,以突出其作为进化可塑性的范例,该可塑性是RNA驱动RNP发挥催化和意想不到的调控作用的广泛基础。

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