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具有G-U紧邻碱基对的天然存在的RNA单错配的热力学表征。

Thermodynamic characterization of naturally occurring RNA single mismatches with G-U nearest neighbors.

作者信息

Davis Amber R, Znosko Brent M

机构信息

Department of Chemistry, Saint Louis University, Saint Louis, Missouri 63103, USA.

出版信息

Biochemistry. 2008 Sep 23;47(38):10178-87. doi: 10.1021/bi800471z. Epub 2008 Aug 29.

Abstract

Due to their prevalence and roles in biological systems, single mismatches adjacent to G-U pairs are important RNA structural elements. Since there are only limited experimental values for the stability of single mismatches adjacent to G-U pairs, current algorithms using free energy minimization to predict RNA secondary structure from sequence assign predicted thermodynamic values to these types of single mismatches. Here, thermodynamic data are reported for frequently occurring single mismatches adjacent to at least one G-U pair. This experimental data can be used in place of predicted thermodynamic values in algorithms that predict secondary structure from sequence using free energy minimization. When predicting the thermodynamic contributions of previously unmeasured single mismatches, most algorithms apply the same thermodynamic penalty for an A-U pair adjacent to a single mismatch and a G-U pair adjacent to a single mismatch. A recent study, however, suggests that the penalty for a G-U pair adjacent to a tandem mismatch should be 1.2 +/- 0.1 kcal/mol, and the penalty for an A-U pair adjacent to a tandem mismatch should be 0.5 +/- 0.2 kcal/mol [Christiansen, M. E. and Znosko, B. M. (2008) Biochemistry 47, 4329-4336]. Therefore, the data reported here are combined with the existing thermodynamic dataset of single mismatches, and nearest neighbor parameters are derived for an A-U pair adjacent to a single mismatch (1.1 +/- 0.1 kcal/mol) and a G-U pair adjacent to a single mismatch (1.4 +/- 0.1 kcal/mol).

摘要

由于其在生物系统中的普遍性及其作用,与G-U碱基对相邻的单个错配是重要的RNA结构元件。由于与G-U碱基对相邻的单个错配稳定性的实验值有限,当前使用自由能最小化从序列预测RNA二级结构的算法会为这类单个错配分配预测的热力学值。在此,报告了与至少一个G-U碱基对相邻的常见单个错配的热力学数据。该实验数据可用于在使用自由能最小化从序列预测二级结构的算法中替代预测的热力学值。在预测以前未测量的单个错配的热力学贡献时,大多数算法对与单个错配相邻的A-U碱基对和与单个错配相邻的G-U碱基对应用相同的热力学罚分。然而,最近的一项研究表明,与串联错配相邻的G-U碱基对的罚分为1.2±0.1千卡/摩尔,与串联错配相邻的A-U碱基对的罚分为0.5±0.2千卡/摩尔[克里斯蒂安森,M.E.和兹诺斯科,B.M.(2008年)《生物化学》47,4329 - 4336]。因此,此处报告的数据与现有的单个错配热力学数据集相结合,并推导出与单个错配相邻的A-U碱基对(1.1±0.1千卡/摩尔)和与单个错配相邻的G-U碱基对(1.4±0.1千卡/摩尔)的最近邻参数。

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