首页> 外文期刊>Nucleic Acids Research >Structural studies on tRNA acceptor stem microhelices: exchange of the discriminator base A73 for G in human tRNALeu switches the acceptor specificity from leucine to serine possibly by decreasing the stability of the terminal G1-C72 base pair
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Structural studies on tRNA acceptor stem microhelices: exchange of the discriminator base A73 for G in human tRNALeu switches the acceptor specificity from leucine to serine possibly by decreasing the stability of the terminal G1-C72 base pair

机译:tRNA受体茎微螺旋的结构研究:区分人类tRNALeu中G的鉴别基A73可能将受体的特异性从亮氨酸变为丝氨酸,这可能是通过降低末端G1-C72碱基对的稳定性来实现的

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摘要

Correct recognition of transfer RNAs (tRNAs) by aminoacyl-tRNA synthetases (aaRS) is crucial to the maintenance of translational fidelity. The discriminator base A73 in human tRNALeuis critical for its specific recognition by the aaRS. Exchanging A73 for G abolishes leucine acceptance and converts it into a serine acceptor in vitro . Two RNA microhelices of 24 nt length that correspond to the tRNALeuacceptor stem and differ only in the discriminator base were synthesized: a wild-type tRNALeumicrohelix, where nt 21 corresponds to the discriminator base position 73, and an A21G mutant microhelix. To investigate whether different identities of both tRNAs are caused by conformational differences, NMR and UV melting experiments were performed on both microhelices. Two-dimentional NOESY spectra showed both microhelices to exhibit the same overall conformation at their 3'-CCA ends. Thermodynamic analysis and melting behaviour of the base-paired imino protons observed by NMR spectroscopy suggest that the A21G (A73G in tRNA) exchange results in a decrease of melting transition cooperativity and a destabilization of the terminal G1-C20 (G1-C72 in tRNA) base pair. Furthermore, the fact that this 3'-terminal imino proton is more solvent-exposed at physiological temperature might be another indication for the importance of the stability of the terminal base pair for specific tRNA recognition.
机译:氨酰基-tRNA合成酶(aaRS)正确识别转移RNA(tRNA)对维持翻译保真度至关重要。人tRNALeuis中的鉴别基A73对aaRS的特异性识别至关重要。用G交换A73消除了亮氨酸的接受,并在体外将其转化为丝氨酸受体。合成了两个对应于tRNALeuacceptor茎且仅在鉴别基上有所不同的长度为24 nt的RNA微螺旋:一个野生型tRNALeumicrohelix,其中nt 21对应于鉴别基的第73位,以及一个A21G突变微螺旋。为了研究两个tRNA的不同身份是否是由构象差异引起的,对两个微螺旋均进行了NMR和UV熔解实验。二维NOESY光谱显示两个微螺旋在其3'-CCA末端均显示出相同的整体构象。 NMR光谱观察到的碱基配对亚氨基质子的热力学分析和熔融行为表明,A21G(tRNA中为A73G)交换导致熔融转变协同性降低,末端G1-C20(tRNA中为G1-C72)不稳定碱基对。此外,该3'-末端亚氨基质子在生理温度下更多地被溶剂暴露的事实可能是末端碱基对的稳定性对于特异性tRNA识别的重要性的另一个指示。

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