RNA研究的最新前沿

T. Gingeras
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引用次数: 0

摘要

RNA的生物学重要性随着我们对其多种类型、结构、化学成分和生物学作用的复杂性的认识而扩大。对RNA的研究有助于揭示基本的生物过程,包括:基因组内的信息组织,转录(为转录因子和染色质修饰蛋白提供支架)和转录后(RNA编辑和修饰,翻译,海绵)水平上基因表达的控制机制,发育和细胞生物学中涉及的元件的时空定位,以及第一个RNA基因组的进化。最近,RNA的研究已经将其作为诊断的临床作用扩展到检测疾病的治疗领域。最后,RNA研究的进展是由许多新的方法和计算方法的发展所推动的。RNA研究的未来将进一步加深我们对内表型起源的理解,这些发现将成为RNA研究前沿的重点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current frontiers in RNA research
The biological importance of RNA has expanded as our appreciation of the complexity of its multiple types, structures, chemical compositions and biological roles. Research in RNA has been instrumental in revealing insights into fundamental biological processes including: the organization of information within genomes, the mechanisms of control of gene expression at the transcriptional (providing scaffolds for transcription factors and chromatin-modifying proteins) and post-transcriptional (RNA editing and modifications, translation, sponging) levels, spatiotemporal localization of elements involved in developmental and cell biology, and the evolution of first RNA genomes. Most recently, studies of RNA have expanded their clinical roles as diagnostics to the realm of therapeutic treatment for detected diseases. Finally, advances in RNA studies have been prompted by and contributed to the development of many novel methodological and computational approaches. The future of RNA research will add even more to our understanding of the origins of endophenotypes and these findings will be the focus of the Frontiers in RNA Research.
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