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核糖体RNA中保守茎环结构的构象。

The conformation of a conserved stem-loop structure in ribosomal RNA.

作者信息

van Knippenberg P H, Heus H A

机构信息

Department of Biochemistry, State University of Leiden, The Netherlands.

出版信息

J Biomol Struct Dyn. 1983 Oct;1(2):371-81. doi: 10.1080/07391102.1983.10507448.

Abstract

The RNA of small ribosomal subunits contains a conserved stem-loop structure near the 3' end. Characteristics for the hairpins are: (a) a nine-basepairs stem: (b) a conserved A-UU-G junction in the stem: (c) a conserved sequence Gm6(2)AM6(2)A sequence in the loop (except yeast mitochondria and mutants from bacteria). We are using UV-optics, micro-calorimetry and 500 MHz-NMR to investigate fragments of about 50 nucleotides cleaved from the 3' ends of small ribosomal subunit RNA's by bacteriocins. Our preliminary conclusions are: (1) Dimethylation of the adenines in the loop destabilizes the hairpin because of an increased stacking; (2) melting of the hairpin starts at the ends as well as in the middle at the A-UU-G junction; (3) basepair substitutions have an unexpectedly large effect on thermal stability.

摘要

小核糖体亚基的RNA在3'端附近含有一个保守的茎环结构。发夹结构的特征如下:(a)一个由九个碱基对组成的茎;(b)茎中一个保守的A-UU-G连接;(c)环中一个保守序列Gm6(2)AM6(2)A序列(酵母线粒体和细菌突变体除外)。我们正在使用紫外光学、微量量热法和五百兆赫核磁共振技术来研究由细菌素从小核糖体亚基RNA的3'端切割下来的约50个核苷酸的片段。我们的初步结论是:(1)环中腺嘌呤的二甲基化由于堆积增加而使发夹结构不稳定;(2)发夹结构的解链始于两端以及A-UU-G连接的中间位置;(3)碱基对替换对热稳定性有出乎意料的巨大影响。

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