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The tRNA Elbow in Structure, Recognition and Evolution

机译:tRNA肘的结构,识别和进化

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Prominent in the L-shaped three-dimensional structure of tRNAs is the “elbow” where their two orthogonal helical stacks meet. It has a conserved structure arising from the interaction of the terminal loops of the D- and T-stem-loops, and presents to solution a flat face of a tertiary base pair between the D- and T-loops. In addition to the ribosome, which interacts with the elbow in all three of its tRNA binding sites, several cellular RNAs and many proteins are known to recognize the elbow. At least three classes of non-coding RNAs, namely 23S rRNA, ribonuclease P, and the T-box riboswitches, recognize the tRNA elbow employing an identical structural motif consisting of two interdigitated T-loops. In contrast, structural solutions to tRNA-elbow recognition by proteins are varied. Some enzymes responsible for post-transcriptional tRNA modification even disrupt the elbow structure in order to access their substrate nucleotides. The evolutionary origin of the elbow is mysterious, but, because it does not explicitly participate in the flow of genetic information, it has been proposed to be a late innovation. Regardless, it is biologically essential. Even some viruses that hijack the cellular machinery using tRNA decoys have convergently evolved near-perfect mimics of the tRNA elbow.
机译:tRNA的L形三维结构中最突出的是“肘”,它们的两个正交螺旋堆栈相交。它具有保守的结构,该结构由D-和T-茎环的末端环的相互作用引起,并提出解决D-和T-环之间的第三碱基对的平面的方法。除了在三个tRNA结合位点均与肘部相互作用的核糖体外,已知有几种细胞RNA和许多蛋白质可识别肘部。至少三类非编码RNA,即23S rRNA,核糖核酸酶P和T-box核糖开关,利用由两个相互交叉的T环组成的相同结构基序识别tRNA肘。相反,蛋白质对tRNA肘部识别的结构解决方案是多种多样的。一些负责转录后tRNA修饰的酶甚至破坏了肘部结构,以获取其底物核苷酸。肘部的进化起源是神秘的,但是,由于它没有明确参与遗传信息的流动,因此有人提出将其作为晚期创新。无论如何,它是生物学必不可少的。甚至有些使用tRNA诱饵劫持细胞机制的病毒也已经融合进化出了近乎完美的tRNA肘模拟物。

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