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Mapping tRNA structure in solution using double-strand-specific ribonuclease V1 from cobra venom.

机译:使用来自眼镜蛇毒液的双链特异性核糖核酸酶V1在溶液中定位tRNA结构。

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摘要

A method for mapping all base-paired stems in both elongation and initiator tRNAs is described using double-stranded-specific ribonuclease V1 from the venom of the cobra Naja naja oxiana. 32p-end-labeled RNA is first partially digested with double-strand-specific V1 nuclease under near physiological conditions, and the resultant fragments are than electrophoretically fractionated by size in adjacent lanes of a polyacrylamide gel run in 90% formamide. After autoradiography, the base-paired nucleotides are definitively located by comparing V1 generated bands with fragments of known length produced by both Neurospora endonuclease and base-specific ribonucleases. Using the substrates yeast tRNAPhe an E, coli tRNAfMet of known three-dimensional structure, we find V1 nuclease to cleave entirely within every base-paired stem. Our studies also reveal that nuclease V1 will digest paired nucleotides not hydrogen-bonded by standard Watson-Crick base-pairing. In yeast tRNAPhe cleavage of both wobble base-pairs and nucleotides involved in tertiary base-base hydrogen bonding is demonstrated.
机译:描述了使用来自眼镜蛇眼镜蛇眼镜蛇毒液的毒液的双链特异性核糖核酸酶V1定位延伸和起始tRNA中所有碱基配对茎的方法。首先在近乎生理条件下,用双链特异性V1核酸酶部分消化32p-末端标记的RNA,然后将所得片段按大小在90%甲酰胺中运行的聚丙烯酰胺凝胶的相邻泳道中进行电泳分级。放射自显影后,通过将V1产生的条带与Neurospora内切核酸酶和碱基特异性核糖核酸酶产生的已知长度的片段进行比较,确定碱基配对的核苷酸的位置。使用底物酵母tRNAPhe和已知三维结构的大肠杆菌tRNAfMet,我们发现V1核酸酶完全在每个碱基配对的茎中裂解。我们的研究还表明,核酸酶V1将消化通过标准Watson-Crick碱基配对未氢键结合的配对核苷酸。在酵母tRNAPhe中,摆动碱基对和涉及叔碱基-氢键结合的核苷酸均被裂解。

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