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Examination of the catalytic fitness of the hammerhead ribozyme by in vitro selection.

机译:通过体外选择检查锤头状核酶的催化适应性。

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摘要

We have designed a self-cleaving ribozyme construct that is rendered inactive during preparative in vitro transcription by allosteric interactions with ATP. This allosteric ribozyme was constructed by joining a hammerhead domain to an ATP-binding RNA aptamer, thereby creating a ribozyme whose catalytic rate can be controlled by ATP. Upon purification by PAGE, the engineered ribozyme undergoes rapid self-cleavage when incubated in the absence of ATP. This strategy of "allosteric delay" was used to prepare intact hammerhead ribozymes that would otherwise self-destruct during transcription. Using a similar strategy, we have prepared a combinatorial pool of RNA in order to assess the catalytic fitness of ribozymes that carry the natural consensus sequence for the hammerhead. Using in vitro selection, this comprehensive RNA pool was screened for sequence variants of the hammerhead ribozyme that also display catalytic activity. We find that sequences that comprise the core of naturally occurring hammerhead dominate the population of selected RNAs, indicating that the natural consensus sequence of this ribozyme is optimal for catalytic function.
机译:我们设计了一种自我切割的核酶构建体,该构建体通过与ATP的构构相互作用在制备性体外转录过程中变得无活性。该变构核酶是通过将锤头结构域与ATP结合RNA适体连接而构建的,从而产生一种其催化速率可以由ATP控制的核酶。通过PAGE纯化后,工程化的核酶在不存在ATP的情况下孵育时会经历快速的自我切割。这种“变构延迟”的策略被用来制备完整的锤头状核酶,否则它们在转录过程中会自毁。使用类似的策略,我们准备了一个RNA组合池,以评估携带有锤头自然共有序列的核酶的催化适应性。使用体外选择,对这个全面的RNA库进行筛选,以筛选出锤头状核酶的序列变体,该变体也显示出催化活性。我们发现,包含天然锤头的核心的序列主导着所选RNA的种群,这表明该核酶的天然共有序列对于催化功能而言是最佳的。

著录项

  • 期刊名称 RNA
  • 作者

    J Tang; R R Breaker;

  • 作者单位
  • 年(卷),期 1997(3),8
  • 年度 1997
  • 页码 914–925
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

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