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Engineered allosteric ribozymes that respond to specific divalent metal ions

机译:工程化的变构核酶,对特定的二价金属离子有反应

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In vitro selection was used to isolate five classes of allosteric hammerhead ribozymes that are triggered by binding to certain divalent metal ion effectors. Each of these ribozyme classes are similarly activated by Mn2+, Fe2+, Co2+, Ni2+, Zn2+ and Cd2+, but their allosteric binding sites reject other divalent metals such as Mg2+, Ca2+ and Sr2+. Through a more comprehensive survey of cations, it was determined that some metal ions (Be2+, Fe3+, Al3+, Ru2+ and Dy2+) are extraordinarily disruptive to the RNA structure and function. Two classes of RNAs examined in greater detail make use of conserved nucleotides within the large internal bulges to form critical structures for allosteric function. One of these classes exhibits a metal-dependent increase in rate constant that indicates a requirement for the binding of two cation effectors. Additional findings suggest that, although complex allosteric functions can be exhibited by small RNAs, larger RNA molecules will probably be required to form binding pockets that are uniquely selective for individual cation effectors.
机译:体外选择用于分离五类变构锤头状核酶,这些酶是通过与某些二价金属离子效应子结合而触发的。这些核酶类别均被M​​n2 +,Fe2 +,Co2 +,Ni2 +,Zn2 +和Cd2 +相似地激活,但它们的变构结合位点排斥其他二价金属,例如Mg2 +,Ca2 +和Sr2 +。通过对阳离子的更全面调查,可以确定某些金属离子(Be2 +,Fe3 +,Al3 +,Ru2 +和Dy2 +)对RNA的结构和功能具有极强的破坏性。更详细检查的两类RNA利用内部大凸起中的保守核苷酸形成变构功能的关键结构。这些类别之一表现出速率常数的金属依赖性增加,这表明需要结合两个阳离子效应子。其他发现表明,尽管小RNA可以表现出复杂的变构功能,但可能需要更大的RNA分子才能形成对单个阳离子效应子具有唯一选择性的结合口袋。

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