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Modeling active RNA structures using the intersection of conformational space: application to the lead-activated ribozyme.

机译:使用构象空间的交集建模活性RNA结构:应用于铅激活核酶。

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摘要

The Pb2+ cleavage of a specific phosphodiester bond in yeast tRNA(Phe) is the classical model of metal-assisted RNA catalysis. In vitro selection experiments have identified a tRNA(Phe) variant, the leadzyme, that is very active in cleavage by Pb2+. We present here a three-dimensional modeling protocol that was used to propose a structure for this ribozyme, and is based on the computation of the intersection of conformational space of sequence variants and the use of chemical modification data. Sequence and secondary structure data were used in a first round of computer modeling that allowed identification of conformations compatible with all known leadzyme variants. Common conformations were then tested experimentally by evaluating the activity of analogues containing modified nucleotides in the catalytic core. These experiments led to a new structural hypothesis that was tested in a second round of computer modeling. The resulting proposal for the active conformation of the leadzyme is consistent with all known structural data. The final model suggests an in-line SN2 attack mechanism and predicts two Pb2+ binding sites. The protocol presented here is generally applicable in modeling RNAs whenever the catalytic or binding activity of structural analogues is known.
机译:酵母tRNA(Phe)中特定磷酸二酯键的Pb2 +裂解是金属辅助RNA催化的经典模型。体外选择实验已经鉴定出tRNA(Phe)变体,即铅酶,在Pb2 +的切割中非常活跃。我们在这里提出了一个三维建模协议,该协议用于提出这种核酶的结构,并且基于序列变异的构象空间的交集和化学修饰数据的使用。在第一轮计算机建模中使用了序列和二级结构数据,该数据可以鉴定与所有已知前导酶变体兼容的构象。然后通过评估催化核心中含有修饰核苷酸的类似物的活性,通过实验测试常见的构象。这些实验导致了新的结构假设,该假设在第二轮计算机建模中得到了验证。产生的关于铅酶活性构象的提议与所有已知的结构数据一致。最终模型提出了一种SN2串联攻击机制,并预测了两个Pb2 +结合位点。只要已知结构类似物的催化或结合活性,此处提出的方案通常适用于RNA建模。

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