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Structure-guided Engineering Of The Regioselectivity Of Rna Ligase Ribozymes

机译:Rna连接酶核糖酶区域选择性的结构指导工程

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Ribozyme-catalyzed RNA synthesis is central to the RNA world hypothesis. No natural RNA polymerase ribozymes have been discovered. However, ribozymes that catalyze the requisite chemistry, generating a new phosphodiester through attack of a terminal hydroxyl of an RNA on the a-phosphate of a triphosphate-activated oligonucleotide, have been isolated by in vitro selection. These experiments often yield ribozymes that generate 2'-5' phosphodiesters rather than conventional 3'-5' linkages. We have determined crystal structures of the duplex formed by the template segment of a representative 2'-5' RNA ligase ribozyme, the class II ligase, and its ligation product. The structures reveal a product-template duplex with a G·A pair at the ligation junction. This sheared pair is flanked on one side by a minor groove-broadening wedge comprised of two unpaired nucleotides. The reported structure of an independently isolated 3'-5' ligase ribozyme, the L1 ligase, shows a product-template duplex that shares the G·A pair with the class II ligase. However, this G·A pair is flanked by G·U wobbles, rather than an unpaired wedge. We demonstrate that these structural differences of the substrate-template duplexes are largely responsible for the divergent regioselectivity of the two ribozymes, independent of their catalytic moieties, by constructing chimeras. The L1 ligase with a class II substrate-template duplex shows a 30-fold increase in 2'-5' bond synthesis, while the class II ligase with an L1 substrate-template duplex produces 3'-5' bonds exclusively. These results demonstrate how local geometry inherent to the substrate-template duplexes controls the regioselectivity of ribozyme-catalyzed RNA ligation reactions.
机译:核酶催化的RNA合成是RNA世界假说的核心。没有发现天然RNA聚合酶核酶。然而,已经通过体外选择分离出了催化必要化学反应的核酶,该核酶通过RNA的末端羟基攻击三磷酸活化的寡核苷酸的α-磷酸而产生新的磷酸二酯。这些实验通常产生核酶,其产生2'-5'磷酸二酯而不是常规的3'-5'键。我们已经确定了由代表性2'-5'RNA连接酶核酶,II类连接酶及其连接产物的模板片段形成的双链体的晶体结构。该结构揭示了在连接连接处具有G·A对的产物-模板双链体。该剪切对在一侧上是由两个未配对核苷酸组成的较小的扩宽沟楔。报道的独立分离的3'-5'连接酶核酶L1连接酶的结构显示了与II类连接酶共有G·A对的产物模板双链体。但是,这对G·A两侧是G·U摆动,而不是未配对的楔形。我们证明,通过构建嵌合体,底物-模板双链体的这些结构差异在很大程度上负责两个核酶的不同区域选择性,而与它们的催化部分无关。具有II类底物-模板双链体的L1连接酶显示2'-5'键合成增加30倍,而具有L1底物-模板双链体的II类连接酶仅产生3'-5'键。这些结果证明了底物-模板双链体固有的局部几何形状如何控制核酶催化的RNA连接反应的区域选择性。

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