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真核生物5S核糖体RNA的E环构象。

The conformation of loop E of eukaryotic 5S ribosomal RNA.

作者信息

Wimberly B, Varani G, Tinoco I

机构信息

Department of Chemistry, University of California, Berkeley 94720.

出版信息

Biochemistry. 1993 Feb 2;32(4):1078-87. doi: 10.1021/bi00055a013.

Abstract

The solution structure of a 27-nucleotide duplex, including the internal loop E from Xenopus laevis 5S ribosomal RNA, has been studied by two-dimensional NMR spectroscopy, followed by restrained molecular dynamics. The highly conserved internal loop closes to form a G.A base pair and a reverse-Hoogsteen A.U base pair. Extensive interstrand stacking between these uncommon base pairs provides a structural explanation for an interstrand ultraviolet-induced cross-link. A guanosine residue is bulged into the major groove and may form a base-triple with the adjacent reverse-Hoogsteen A.U pair. The structure of the less highly-conserved portion of the loop is less well-defined by the NMR data. A single-nucleotide deletion mutant has a very different, open conformation without mismatched base pairs [Varani, G., Wimberly, B., & Tinoco, I. Jr. (1989) Biochemistry 28, 7760-7772]. The implications of the structure for binding of the transcription factor TFIIIA and the cytotoxin alpha-sarcin are discussed.

摘要

通过二维核磁共振光谱法,随后进行受限分子动力学研究,我们对一段包含非洲爪蟾5S核糖体RNA内部环E的27个核苷酸双链体的溶液结构进行了研究。高度保守的内部环闭合形成一个G·A碱基对和一个反向-霍格斯坦A·U碱基对。这些不常见碱基对之间广泛的链间堆积为链间紫外线诱导的交联提供了结构解释。一个鸟苷残基突入大沟,可能与相邻的反向-霍格斯坦A·U对形成碱基三联体。核磁共振数据对环中保守性较低部分的结构定义不太明确。一个单核苷酸缺失突变体具有非常不同的开放构象,没有错配碱基对[瓦拉尼,G.,温伯利,B.,& 蒂诺科,I. Jr.(1989年)《生物化学》28卷,7760 - 7772页]。本文讨论了该结构对转录因子TFIIIA和细胞毒素α-肌动蛋白结合的影响。

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