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Solvent viscosity facilitates replication and ribozyme catalysis from an RNA duplex in a model prebiotic process

机译:溶剂粘度有助于在模型益生元过程中从RNA双链体复制和核酶催化

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摘要

The RNA World hypothesis posits that RNA was once responsible for genetic information storage and catalysis. However, a prebiotic mechanism has yet to be reported for the replication of duplex RNA that could have operated before the emergence of polymerase ribozymes. Previously, we showed that a viscous solvent enables information transfer from one strand of long RNA duplex templates, overcoming ‘the strand inhibition problem'. Here, we demonstrate that the same approach allows simultaneous information transfer from both strands of long duplex templates. An additional challenge for the RNA World is that structured RNAs (like those with catalytic activity) function poorly as templates in model prebiotic RNA synthesis reactions, raising the question of how a single sequence could serve as both a catalyst and as a replication template. Here, we show that a viscous solvent also facilitates the transition of a newly synthesized hammerhead ribozyme sequence from its inactive, duplex state to its active, folded state. These results demonstrate how fluctuating environmental conditions can allow a ribozyme sequence to alternate between acting as a template for replication and functioning as a catalyst, and illustrate the potential for temporally changing environments to enable molecular processes necessary for the origin of life.
机译:RNA世界假说假设RNA曾经负责遗传信息的存储和催化。然而,尚未报道一种双链RNA复制的益生元机制,该双链RNA可能在聚合酶核酶出现之前就已经起作用。以前,我们证明了粘性溶剂能够从长链RNA双链模板的一条链中转移信息,从而克服了“链抑制问题”。在这里,我们证明了相同的方法允许从长双工模板的两条链同时进行信息传输。 RNA世界面临的另一个挑战是结构化的RNA(如具有催化活性的RNA)在模型益生元RNA合成反应中作为模板的功能很差,这引发了一个问题,即单个序列如何既可以充当催化剂又可以充当复制模板。在这里,我们显示出粘性溶剂还有助于新合成的锤头状核酶序列从其非活性双链体状态过渡到其活性折叠状态。这些结果证明了波动的环境条件如何使核酶序列在充当复制模板和充当催化剂之间交替变化,并说明了随时间变化的环境可能实现生命起源所需的分子过程的潜力。

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