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迈向数字化基因反应:具有较少四重体的 RNA G-四链体以更高的协同性折叠。

Toward a digital gene response: RNA G-quadruplexes with fewer quartets fold with higher cooperativity.

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Am Chem Soc. 2012 Jan 18;134(2):812-5. doi: 10.1021/ja2096255. Epub 2011 Dec 28.

Abstract

Changes in RNA conformation can alter gene expression. The guanine quadruplex sequence (GQS) is an RNA motif that folds in the presence of K(+) ions. Changes in the conformation of this motif could be especially important in regulating gene expression in plants because intracellular K(+) concentrations often increase during drought stress. Little is known about the folding thermodynamics of RNA GQS. We show here that RNA GQS with tracts containing three G's [e.g., (GGGxx)(4)] have a modest dependence on the K(+) concentration, folding with no or even negative cooperativity (Hill coefficients ≤1), and are associated with populated folding intermediates. In contrast, GQS with tracts containing just two G's [e.g., (GGxx)(4)] have a steep dependence on the K(+) concentration and fold with positive cooperativity (Hill coefficients of 1.7-2.7) without significantly populating intermediate states. We postulate that in plants, the more stable G3 sequences are largely folded even under unstressed conditions, while the less stable G2 sequences fold only at the higher K(+) concentrations associated with cellular stress, wherein they respond sharply to changing K(+) concentrations. Given the binary nature of their folding, G2 sequences may find application in computation with DNA and in engineering of genetic circuits.

摘要

RNA 构象的变化可以改变基因表达。鸟嘌呤四链体序列(GQS)是一种在 K(+) 离子存在下折叠的 RNA 基序。这种基序构象的变化在调节植物中的基因表达方面可能尤为重要,因为细胞内 K(+) 浓度在干旱胁迫期间经常增加。关于 RNA GQS 的折叠热力学,我们知之甚少。我们在这里表明,具有三个 G 基序的 RNA GQS [例如 (GGGxx)(4)] 对 K(+) 浓度有适度的依赖性,没有或甚至负协同折叠(Hill 系数≤1),并且与已折叠的中间态相关。相比之下,具有仅包含两个 G 基序的 RNA GQS [例如 (GGxx)(4)] 对 K(+) 浓度有陡峭的依赖性,并且以正协同性折叠(Hill 系数为 1.7-2.7),而没有显著填充中间态。我们假设,在植物中,更稳定的 G3 序列即使在未受胁迫的条件下也主要折叠,而不太稳定的 G2 序列仅在与细胞应激相关的较高 K(+) 浓度下折叠,此时它们对不断变化的 K(+) 浓度做出快速响应。鉴于它们折叠的二元性质,G2 序列可能在 DNA 计算和遗传电路工程中得到应用。

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