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Sequence-function relationships provide new insight into the cleavage site selectivity of the 8–17 RNA-cleaving deoxyribozyme

机译:序列与功能的关系为8-17 RNA切割脱氧核酶的切割位点选择性提供了新的见解

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Many sequence variations of the 8–17 RNA-cleaving deoxyribozyme have been isolated through in vitro selection. In an effort to understand how these sequence variations affect cleavage site selectivity, we systematically mutated the catalytic core of 8–17 and measured the cleavage activity of each mutant deoxyribozyme against all 16 possible chimeric (RNA/DNA) dinucleotide junctions. We observed sequence-function relationships that suggest how the following non-conserved positions in the catalytic core influence selectivity at the dinucleotide (5′ rN18-N1.1 3′) cleavage site: (i) positions 2.1 and 12 represent a primary determinant of the selectivity at the 3′ position (N1.1) of the cleavage site; (ii) positions 15 and 15.0 represent a primary determinant of the selectivity at the 5′ position (rN18) of the cleavage site and (iii) the sequence of the 3-bp intramolecular stem has relatively little influence on cleavage site selectivity. Furthermore, we report for the first time that 8–17 variants have the collective ability to cleave all dinucleotide junctions with rate enhancements of at least 1000-fold over background. Three optimal 8–17 variants, identified from ~75 different sequences that were examined, can collectively cleave 10 of 16 junctions with useful rates of ≥0.1 min?1, and exhibit an overall hierarchy of reactivity towards groups of related junctions according to the order NG NA NC NT.
机译:通过体外选择已分离出许多8-17 RNA切割脱氧核酶的序列变异。为了理解这些序列变异如何影响切割位点的选择性,我们系统地突变了8-17的催化核心,并测量了每种突变型脱氧核酶对所有16种可能的嵌合(RNA / DNA)二核苷酸连接的切割活性。我们观察到序列-功能关系,表明催化核心中以下非保守位置如何影响二核苷酸(5'rN 18 -N 1.1 3')裂解的选择性位点:(i)2.1和12位代表裂解位点3′位置(N 1.1 )的选择性的主要决定因素; (ii)15和15.0位代表切割位点5'位(rN 18 )选择性的主要决定因素;(iii)3 bp分子内茎的序列相对较少对裂解位点选择性的影响。此外,我们首次报道8–17个变体具有切割所有二核苷酸连接的集体能力,其速率比背景增强了至少1000倍。从〜75个不同的序列中鉴定出三个最佳的8–17个变异体,它们可以以≥0.1min ?1 的有效速率共同裂解16个连接中的10个,并显示出对各组的整体反应性按照NG> NA> NC> NT的顺序排列相关结。

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