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酵母苯丙氨酸转运核糖核酸的三维结构:多核苷酸链的折叠

Three-dimensional structure of yeast phenylalanine transfer RNA: folding of the polynucleotide chain.

作者信息

Kim S H, Quigley G J, Suddath F L, McPherson A, Sneden D, Kim J J, Weinzierl J, Rich A

出版信息

Science. 1973 Jan 19;179(4070):285-8. doi: 10.1126/science.179.4070.285.

Abstract

At 4 A resolution the polynucleotides in yeast phenylalanine transfer RNA are seen in a series of electron dense masses about 5.8 A apart. These peaks are probably associated with the phosphate groups, while lower levels of electron density between segments of adjacent polynucleotide chains are interpreted as arising from hydrogen-bonded purine-pyrimidine base pairs. It is possible to trace the entire polynucleotide chain with only two minor regions of ambiguity. The polynucleotide chain has a secondary structure consistent with the cloverleaf conformation; however, its folding is different from that proposed in any model. The molecule is made of two double-stranded helical regions oriented at right angles to each other in the shape of an L. One end of the L has the CCA acceptor; the anticodon loop is at the other end, and the dihydrouridine and TpsiC loops form the corner.

摘要

在4埃的分辨率下,可以看到酵母苯丙氨酸转移核糖核酸中的多核苷酸呈一系列电子密度较高的团块,彼此相距约5.8埃。这些峰可能与磷酸基团有关,而相邻多核苷酸链段之间较低的电子密度水平被解释为来自氢键连接的嘌呤 - 嘧啶碱基对。仅通过两个较小的模糊区域就可以追踪整个多核苷酸链。多核苷酸链具有与三叶草构象一致的二级结构;然而,其折叠方式与任何模型中提出的都不同。该分子由两个相互成直角的双链螺旋区域组成,呈L形。L的一端有CCA受体;反密码子环在另一端,二氢尿嘧啶环和TψC环形成拐角。

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