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新型Mg(2+)依赖性自我切割核酶的筛选。

Selection of novel Mg(2+)-dependent self-cleaving ribozymes.

作者信息

Williams K P, Ciafré S, Tocchini-Valentini G P

机构信息

CNR Institute of Cell Biology, Rome, Italy.

出版信息

EMBO J. 1995 Sep 15;14(18):4551-7. doi: 10.1002/j.1460-2075.1995.tb00134.x.

Abstract

Four RNA motifs are known that catalyse site-specific cleavage in the presence of Mg2+ ions, all discovered in natural RNAs. In a single in vitro selection experiment we have isolated representatives of five novel classes of Mg(2+)-dependent ribozymes. Small versions of three of these showed that a very simple internal loop type of secondary structure is responsible for the activity. One of these was synthesized in a bimolecular form, and compared directly with the hammerhead ribozyme; for the new ribozyme, the cleavage step of the reaction is much faster than the spontaneous rate of phosphodiester bond cleavage, yet substantially slower than that for the hammerhead. The results suggest that many more Mg(2+)-dependent self-cleaving RNA sequences can be found.

摘要

已知有四种RNA基序在镁离子存在的情况下催化位点特异性切割,它们均在天然RNA中被发现。在一项单一的体外筛选实验中,我们分离出了五种新型镁离子依赖性核酶类别的代表。其中三种的小版本显示,一种非常简单的内部环型二级结构负责其活性。其中一种以双分子形式合成,并直接与锤头状核酶进行比较;对于新的核酶,反应的切割步骤比磷酸二酯键的自发切割速率快得多,但比锤头状核酶的切割速率慢得多。结果表明,可以发现更多的镁离子依赖性自我切割RNA序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5cd/394547/67608409b44c/emboj00042-0176-a.jpg

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