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Chemical synthesis of an artificially branched hairpin ribozyme variant with RNA cleavage activity

机译:化学合成具有RNA裂解活性的人工分支发夹状核酶变体

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Due to the development in the field of RNA synthesis over the past decade of years, preparation of RNA oligonucleotides longer than 50 nucleotides is possible today. In this report, we describe the chemical preparation of a branched RNA molecule with RNA cleavage activity consisting of 81 nucleotides. It is derived from the hairpin ribozyme, a small catalytic RNA occurring in nature. The hairpin ribozyme consists of two separately folded domains (loop A and loop B domain), which can be joined in a number of different ways without loss of activity. In the construct presented here, 2'-deoxy-N4-(6-hydroxyhexyl)-5-methylcytidine was introduced to connect the loop B domain with the loop A domain via an artificial branch. The synthesized branched RNA is able to catalyze the cleavage of a number of suitable substrates. Compared with the corresponding non-branched reverse-joined ribozyme it cleaves its substrates only 5-fold slower. Surprisingly, no ligation activity could be detected. (C) 2004 Elsevier Ltd. All rights reserved.
机译:由于过去十年来RNA合成领域的发展,如今有可能制备长度超过50个核苷酸的RNA寡核苷酸。在这份报告中,我们描述了具有81个核苷酸组成的RNA裂解活性的支链RNA分子的化学制备。它源自发夹状核酶,一种天然存在的小催化RNA。发夹状核酶由两个分开折叠的结构域(环A和环B域)组成,可以通过多种不同方式连接而不会丧失活性。在此处呈现的构建体中,引入了2'-脱氧-N4-(6-羟基己基)-5-甲基胞苷,以通过人工分支将环B结构域与环A结构域连接。合成的分支RNA能够催化许多合适的底物的裂解。与相应的非支链反向连接核酶相比,其裂解底物的速度仅慢5倍。令人惊讶的是,没有检测到连接活性。 (C)2004 Elsevier Ltd.保留所有权利。

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