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完全鉴定锤头状切割中涉及的非桥连磷酸氧原子。

Complete identification of nonbridging phosphate oxygens involved in hammerhead cleavage.

作者信息

Knöll R, Bald R, Fürste J P

机构信息

Institut für Biochemie, Freie Universität Berlin, Germany.

出版信息

RNA. 1997 Feb;3(2):132-40.

Abstract

Phosphorothioate interference analysis is suited for the rapid identification of structurally and functionally important phosphate groups. Previous interference studies, however, have been limited to the analysis of pro-Rp phosphate oxygens. We employed solid-phase oligonucleotide synthesis and modification interference analysis to investigate either of the nonbridging phosphate oxygens within the hammerhead ribozyme. Two novel sites of Sp phosphorothioate interference were identified at positions A6 and U16.1. The results from interference experiments were confirmed by single phosphorothioate substitutions at sites of interest. Metal rescue experiments revealed that direct metal ion coordination occurs in the functional ribozyme only at the site of cleavage and at the pro-Rp oxygen of position Ag. The new approach may be generally useful in rapidly evaluating the functional importance of phosphate groups in nucleic acids.

摘要

硫代磷酸酯干扰分析适用于快速鉴定结构和功能上重要的磷酸基团。然而,先前的干扰研究仅限于对前-Rp磷酸氧的分析。我们采用固相寡核苷酸合成和修饰干扰分析来研究锤头状核酶内的任何一个非桥连磷酸氧。在A6和U16.1位置鉴定出两个新的Sp硫代磷酸酯干扰位点。通过在感兴趣的位点进行单硫代磷酸酯取代,证实了干扰实验的结果。金属拯救实验表明,直接的金属离子配位仅在功能核酶的切割位点和Ag位置的前-Rp氧处发生。这种新方法可能普遍有助于快速评估核酸中磷酸基团的功能重要性。

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