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Unique Archaeal Small RNAs
Annual Review of Genetics ( IF 8.7 ) Pub Date : 2018-11-26 00:00:00 , DOI: 10.1146/annurev-genet-120417-031300
José Vicente Gomes-Filho 1 , Michael Daume 1 , Lennart Randau 1, 2
Affiliation  

Advances in genome-wide sequence technologies allow for detailed insights into the complexity of RNA landscapes of organisms from all three domains of life. Recent analyses of archaeal transcriptomes identified interaction and regulation networks of noncoding RNAs in this understudied domain. Here, we review current knowledge of small, noncoding RNAs with important functions for the archaeal lifestyle, which often requires adaptation to extreme environments. One focus is RNA metabolism at elevated temperatures in hyperthermophilic archaea, which reveals elevated amounts of RNA-guided RNA modification and virus defense strategies. Genome rearrangement events result in unique fragmentation patterns of noncoding RNA genes that require elaborate maturation pathways to yield functional transcripts. RNA-binding proteins, e.g., L7Ae and LSm, are important for many posttranscriptional control functions of RNA molecules in archaeal cells. We also discuss recent insights into the regulatory potential of their noncoding RNA partners.

中文翻译:


独特的古细菌小RNA

全基因组测序技术的进步使人们能够深入了解生命中所有三个领域的生物体RNA格局的复杂性。最近的古细菌转录组分析确定了在这个研究不足的领域中非编码RNA的相互作用和调控网络。在这里,我们回顾了对古细菌生活方式具有重要功能的小型非编码RNA的当前知识,这通常需要适应极端环境。一个重点是高温下古菌中高温下的RNA代谢,这揭示了RNA指导的RNA修饰和病毒防御策略的升高。基因组重排事件导致非编码RNA基因的独特片段化模式,需要复杂的成熟途径才能产生功能性转录本。RNA结合蛋白,例如L7Ae和LSm,对于古细菌细胞中RNA分子的许多转录后控制功能而言,它们是重要的。我们还将讨论其非编码RNA伙伴的监管潜力的最新见解。

更新日期:2018-11-26
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