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The effects of matrices of paired substitutions in mid-acceptor stem on Drosophila tRNA(His) structure and end-processing

机译:中间受体茎中成对取代基对果蝇tRNA(His)结构和最终加工的影响

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摘要

End-maturation reactions, in which the 5' end leader and 3' end trailer of precursor tRNA are removed by RNase P and 3'-tRNase, respectively, are early, essential steps in eukaryotic precursor tRNA processing. End-processing enzymes may be expected to contact the acceptor stem of tRNA due to its proximity to both cleavage sites. We constructed matrices of pair-wise substitutions in mid-acceptor stem at nt 3/70 and 4/69 of Drosophila tRNA(His) and analyzed their ability to be processed by Drosophila RNase P and 3'-tRNase. Ln accord with our earlier study of D/T loop processing matrices, we find that tRNA end processing enzymes respond to sequence changes differently. More processing defects were observed with 3'-tRNase than with RNase P, and substitutions at 4/69 reduced processing more than those at 3/70. We evaluated tRNA folding using structure probing nucleases and investigated the contribution of K-M and V-Max to the processing efficiency of selected variants. Ln one substitution (C3A), mis folding correlates with processing defects. In another (C69A), a disruption of structure appears to be transmitted laterally to both ends of the acceptor stem. Poor processing of C69A by RNase P is due entirely to a reduction in V-max, but for 3'-tRNase, it is due to an increase in K-M. (C) 2000 Academic Press. [References: 30]
机译:终止成熟反应是真核生物前体tRNA加工的早期关键步骤,其中前体tRNA的5'末端前导序列和3'末端拖车分别被RNase P和3'-tRNase去除。可能期望最终加工酶与tRNA的受体茎接触,因为它靠近两个切割位点。我们在果蝇tRNA(His)的nt 3/70和4/69的中位受体茎中构建了成对替换矩阵,并分析了它们被果蝇RNase P和3'-tRNase处理的能力。根据我们对D / T回路加工基质的早期研究,我们发现tRNA末端加工酶对序列变化的反应不同。用3'-tRNase观察到的加工缺陷要比用RNase P观察到的多,并且在4/69处的取代比在3/70位处的加工缺陷更多。我们使用结构探测核酸酶评估了tRNA折叠,并研究了K-M和V-Max对所选变体加工效率的贡献。在一次取代(C3A)中,错折叠与加工缺陷相关。在另一种(C69A)中,结构破坏似乎是横向传递至受体茎的两端。 RNase P对C69A的加工不佳完全是由于V-max降低,但对于3'-tRNase,则是由于K-M升高。 (C)2000学术出版社。 [参考:30]

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