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包含酵母苯丙氨酸转运核糖核酸反密码子环和茎的RNA十五聚体的溶液结构。一项500兆赫的1H核磁共振研究。

The solution structure of a RNA pentadecamer comprising the anticodon loop and stem of yeast tRNAPhe. A 500 MHz 1H-n.m.r. study.

作者信息

Clore G M, Gronenborn A M, Piper E A, McLaughlin L W, Graeser E, van Boom J H

出版信息

Biochem J. 1984 Aug 1;221(3):737-51. doi: 10.1042/bj2210737.

Abstract

A 500 MHz 1H-n.m.r. study on the semi-synthetic RNA pentadecamer 5'-r(C-A-G-A-Cm-U-Gm-A-A-Y-A-psi-m5C-U-G) comprising the anticodon loop and stem (residues 28-42) of yeast tRNAPhe is presented. By using pre-steady-state nuclear-Overhauser-effect measurements all exchangeable and non-exchangeable base proton resonances, all H1' ribose resonances and all methyl proton resonances are assigned and over 70 intra- and inter-nucleotide interproton distances determined. From the distance data the solution structure of the pentadecamer is solved by model-building. It is shown that the pentadecamer adopts a hairpin-loop structure in solution with the loop in a 3'-stacked conformation. This structure is both qualitatively and quantitatively remarkably similar to that of the anticodon loop and stem found in the crystal structures of tRNAPhe with an overall root-mean-square difference of 0.12 nm between the interproton distances determined by n.m.r. and X-ray crystallography. The hairpin-loop solution structure of the pentadecamer is very stable with a 'melting' temperature of 53 degrees C in 500 mM-KCl, and the structural features responsible for this high stability are discussed. Interaction of the pentadecamer with the ribotrinucleoside diphosphate UpUpC, one of the codons for the amino acid phenylalanine, results only in minor perturbations in the structure of the pentadecamer, and the 3'-stacked conformation of the loop is preserved. The stability of the pentadecamer-UpUpC complex (K approximately 2.5 X 10(4) M-1 at 0 degrees C) is approximately an order of magnitude greater than that of the tRNAPhe-UpUpC complex.

摘要

本文介绍了对包含酵母苯丙氨酸tRNA反密码子环和茎(残基28 - 42)的半合成RNA十五聚体5'-r(C - A - G - A - Cm - U - Gm - A - A - Y - A - psi - m5C - U - G)进行的500兆赫1H - 核磁共振研究。通过使用预稳态核Overhauser效应测量,确定了所有可交换和不可交换碱基质子共振、所有H1'核糖共振以及所有甲基质子共振,并测定了70多个核苷酸内和核苷酸间质子间距离。根据距离数据,通过模型构建解析了十五聚体的溶液结构。结果表明,该十五聚体在溶液中采用发夹环结构,环呈3'堆积构象。该结构在定性和定量上都与苯丙氨酸tRNA晶体结构中的反密码子环和茎非常相似,核磁共振和X射线晶体学测定的质子间距离的总体均方根差为0.12纳米。十五聚体的发夹环溶液结构非常稳定,在500毫摩尔/升氯化钾中的“解链”温度为53摄氏度,并讨论了导致这种高稳定性的结构特征。十五聚体与氨基酸苯丙氨酸的密码子之一核糖三磷酸二核苷酸UpUpC的相互作用,仅导致十五聚体结构的轻微扰动,环的3'堆积构象得以保留。十五聚体 - UpUpC复合物的稳定性(0摄氏度时K约为2.5×10⁴ M⁻¹)比苯丙氨酸tRNA - UpUpC复合物的稳定性大约高一个数量级。

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