RNA folding and hydrolysis terms explain ATP independence of RNA interference in human systems.

Nicole Ali, Vinothan N Manoharan
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引用次数: 1

Abstract

Although RNA interference (RNAi) has emerged as an important tool for studying the effects of gene knockdown, it is still difficult to predict the success of RNAi effectors in human systems. By examining the basic thermodynamic equations for RNA interactions in RNAi, we demonstrate how the free energies of RNA folding and phosphoester bond hydrolysis can drive RNAi without ATP. Our calculations of RNAi efficiency are close to actual values obtained from in vitro experimental data from 2 previous studies, for both silencing complex formation (2.50 vs. 2.40 for relative efficiency of RISC formation) and mRNA cleavage (0.50 vs. 0.56 for proportion cleaved). Our calculations are also in agreement with previous observations that duplex unwinding and target site folding are major energy barriers to RNAi.

Abstract Image

RNA折叠和水解术语解释了人体系统中RNA干扰的ATP独立性。
尽管RNA干扰(RNAi)已成为研究基因敲低效应的重要工具,但仍难以预测RNAi效应物在人体系统中的成功。通过研究RNAi中RNA相互作用的基本热力学方程,我们证明了RNA折叠和磷酸酯键水解的自由能如何在没有ATP的情况下驱动RNAi。我们计算的RNAi效率接近于之前两项研究的体外实验数据的实际值,包括沉默复合物形成(RISC形成的相对效率为2.50比2.40)和mRNA切割(比例切割为0.50比0.56)。我们的计算结果也与之前的观察结果一致,即双解绕和靶点折叠是RNAi的主要能量障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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