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8-17脱氧核酶的二核苷酸连接切割多样性

Dinucleotide junction cleavage versatility of 8-17 deoxyribozyme.

作者信息

Cruz Rani P G, Withers Johanna B, Li Yingfu

机构信息

Department of Biochemistry, McMaster University, Hamilton, Canada.

出版信息

Chem Biol. 2004 Jan;11(1):57-67. doi: 10.1016/j.chembiol.2003.12.012.

Abstract

We conducted 16 parallel in vitro selection experiments to isolate catalytic DNAs from a common DNA library for the cleavage of all 16 possible dinucleotide junctions of RNA incorporated into a common DNA/RNA chimeric substrate sequence. We discovered hundreds of sequence variations of the 8-17 deoxyribozyme--an RNA-cleaving catalytic DNA motif previously reported--from nearly all 16 final pools. Sequence analyses identified four absolutely conserved nucleotides in 8-17. Five representative 8-17 variants were tested for substrate cleavage in trans, and together they were able to cleave 14 dinucleotide junctions. New 8-17 variants required Mn2+ to support their broad dinucleotide cleavage capabilities. We hypothesize that 8-17 has a tertiary structure composed of an enzymatic core executing catalysis and a structural facilitator providing structural fine tuning when different dinucleotide junctions are given as cleavage sites.

摘要

我们进行了16个平行的体外筛选实验,从一个普通的DNA文库中分离催化性DNA,用于切割掺入到一个普通DNA/RNA嵌合底物序列中的RNA的所有16种可能的二核苷酸连接。我们从几乎所有16个最终文库中发现了数百种8-17脱氧核酶(一种先前报道的RNA切割催化性DNA基序)的序列变体。序列分析确定了8-17中有四个绝对保守的核苷酸。测试了五个代表性的8-17变体在反式条件下对底物的切割,它们共同能够切割14种二核苷酸连接。新的8-17变体需要Mn2+来支持其广泛的二核苷酸切割能力。我们推测8-17具有一种三级结构,由执行催化作用的酶核心和当不同的二核苷酸连接作为切割位点时提供结构微调的结构促进剂组成。

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