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A small catalytic RNA motif with Diels-Alderase activity

机译:具有Diels-Alderase活性的小催化RNA基序

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Background: The 'RNA world' hypothesis requires that RNA be able to catalyze a wide variety of chemical reactions. In vitro selection from combinatorial RNA libraries has been used to identify several catalytic activities, most of which have resulted in a self-modification of RNA at one of its constituents. The formation of carbon-carbon bonds is considered an essential prerequisite for a complex metabolism based on RNA. Results: We describe the selection and characterization of new ribozymes that catalyze carbon-carbon bond formation by Diels-Alder reaction of a biotinylated maleimide with an RNA-tethered anthracene. Secondary structure analysis identified a 49-nucleotide RNA motif that accelerates the reaction about 20,000-fold. The motif has only ii conserved nucleotides that are present in most of the selected sequences. The ribozyme motif is remarkably adaptable with respect to cofactor and metal-ion requirements. The motif was also re-engineered to give a 38-mer RNA that can act as a 'true' catalyst on short external substrate oligonucleotide-anthracene conjugates. Conclusions: We have identified a small, highly abundant RNA motif that can solve the complex task of forming two carbon-carbon bonds between two reactants in trans, a catalytic capacity useful for creating prebiotically relevant molecules, This is the smallest and fastest RNA catalyst for carbon-carbon bond formation reported to date. [References: 26]
机译:背景:“ RNA世界”假设要求RNA能够催化多种化学反应。从组合RNA文库的体外选择已被用于鉴定几种催化活性,其中大多数已导致RNA在其成分之一上的自我修饰。碳-碳键的形成被认为是基于RNA的复杂代谢的必要前提。结果:我们描述了新的核酶的选择和表征,该酶通过生物素化的马来酰亚胺与RNA锚定的蒽的Diels-Alder反应催化碳-碳键形成。二级结构分析确定了一个49个核苷酸的RNA基序,该基序可将反应加速约20,000倍。该基序仅具有大多数选定序列中存在的ii个保守核苷酸。核酶基序对于辅因子和金属离子的需求具有明显的适应性。还对基序进行了重新设计,以提供38个mer的RNA,该RNA可以充当短的外部底物寡核苷酸-蒽共轭物上的“真正”催化剂。结论:我们已经确定了一个小的高度丰富的RNA基序,它可以解决在两个反式之间形成两个碳-碳键的复杂任务,这对于创建益生元相关分子非常有用,这是最小,最快的RNA催化剂。迄今为止已报道了碳-碳键的形成。 [参考:26]

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