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A DNA enzyme with Mg(2+)-Dependent RNA Phosphoesterase Activity

机译:具有Mg(2+)依赖性RNA磷酸酯酶活性的DNA酶

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摘要

Previously we demonstrated that DNA can act as an enzyme in the Pb(2+)-dependent cleavage of an RNA phosphoester. This is a facile reaction, with an uncatalyzed rate for a typical RNA phosphoester of approx. 10(exp -4)/ min in the presence of 1 mM Pb(OAc)2 at pH 7.0 and 23 C. The Mg(2+) - dependent reaction is more difficult, with an uncatalyzed rate of approx. 10(exp -7)/ min under comparable conditions. Mg(2+) - dependent cleavage has special relevance to biology because it is compatible with intracellular conditions. Using in vitro selection, we sought to develop a family of phosphoester-cleaving DNA enzymes that operate in the presence of various divalent metals, focusing particularly on the Mg(2+) - dependent reaction. Results: We generated a population of greater than 10(exp 13) DNAs containing 40 random nucleotides and carried out repeated rounds of selective amplification, enriching for molecules that cleave a target RNA phosphoester in the presence of 1 mM Mg(2+), Mn(2+), Zn(2+) or Pb(2+). Examination of individual clones from the Mg(2+) lineage after the sixth round revealed a catalytic motif comprised of a three-stem junction.This motif was partially randomized and subjected to seven additional rounds of selective amplification, yielding catalysts with a rate of 0.01/ min. The optimized DNA catalyst was divided into separate substrate and enzyme domains and shown to have a similar level of activity under multiple turnover conditions. Conclusions: We have generated a Mg(2+) - dependent DNA enzyme that cleaves a target RNA phosphoester with a catalytic rate approx. 10(exp 5) - fold greater than that of the uncatalyzed reaction. This activity is compatible with intracellular conditions, raising the possibility that DNA enzymes might be made to operate in vivo.
机译:以前,我们证明了DNA可以作为RNA磷酸酯的Pb(2+)依赖性裂解中的一种酶。这是一个容易的反应,典型的RNA磷酸酯的未催化速率约为。在pH 7.0和23 C下存在1 mM Pb(OAc)2的条件下,反应速度为10(exp -4)/ min。依赖Mg(2+)的反应更困难,未催化速率约为。在类似条件下为10(exp -7)/ min。 Mg(2+)依赖的裂解与生物学特别相关,因为它与细胞内条件兼容。使用体外选择,我们试图开发一个在各种二价金属存在下运行的磷酸酯切割DNA酶家族,特别关注Mg(2+)依赖性反应。结果:我们产生了一个包含40个随机核苷酸的大于10(exp 13)个DNA的群体,并进行了反复的选择性扩增,在1 mM Mg(2 +),Mn存在下富集了裂解目标RNA磷酸酯的分子(2 +),Zn(2+)或Pb(2+)。在第六轮之后从Mg(2+)谱系中检查单个克隆,发现了一个由三茎连接组成的催化基序,该基序被部分随机化并进行了另外七轮选择性扩增,产生的催化剂速率为0.01 /分钟优化的DNA催化剂被分为单独的底物和酶结构域,并显示在多种转换条件下具有相似的活性水平。结论:我们已经产生了一种Mg(2+)依赖的DNA酶,该酶可以以大约1的催化速率裂解目标RNA磷酸酯。 10(exp 5)-比未催化反应大十倍。这种活性与细胞内条件相容,从而增加了使DNA酶在体内起作用的可能性。

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