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Post-transcriptional nucleotide modification and alternative folding of RNA

机译:转录后核苷酸修饰和RNA的替代折叠

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Alternative foldings are an inherent property of RNA and a ubiquitous problem in scientific investigations. To a living organism, alternative foldings can be a blessing or a problem, and so nature has found both, ways to harness this property and ways to avoid the drawbacks. A simple and effective method employed by nature to avoid unwanted folding is the modulation of conformation space through post-transcriptional base modification. Modified nucleotides occur in almost all classes of natural RNAs in great chemical diversity. There are about 100 different base modifications known, which may perform a plethora of functions. The presumably most ancient and simple nucleotide modifications, such as methylations and uridine isomerization, are able to perform structural tasks on the most basic level, namely by blocking or reinforcing single base-pairs or even single hydrogen bonds in RNA. In this paper, functional, genomic and structural evidence on cases of folding space alteration by post-transcriptional modifications in native RNA are reviewed.
机译:替代折叠是RNA的固有特性,也是科学研究中普遍存在的问题。对于活生物体而言,替代性折叠可能是一件幸事或问题,因此自然界已经找到了利用这种特性的方法和避免弊端的方法。自然界采用的一种简单有效的方法来避免不必要的折叠是通过转录后碱基修饰来调节构象空间。修饰的核苷酸以极大的化学多样性存在于几乎所有类别的天然RNA中。已知大约有100种不同的基本修饰,它们可以执行多种功能。据推测,最古老和最简单的核苷酸修饰(例如甲基化和尿苷异构化)能够在最基本的水平上执行结构任务,即通过阻断或增强RNA中的单个碱基对或单个氢键。在这篇论文中,功能,基因组和结构的证据对天然RNA中转录后修饰引起的折叠空间改变的案例进行了综述。

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