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Thermodynamic characterization and nearest neighbor parameters for RNA duplexes under molecular crowding conditions

机译:在分子挤出条件下RNA双工的热力学表征和最近邻参数

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It is essential to study RNA under molecular crowding conditions to better predict secondary structures of RNAs in vivo. No systematic study has been completed to determine the effects of molecular crowding on RNA duplexes of varying lengths and sequence composition. Here, optical melting, circular dichroism, and osmometry data were collected for RNA duplexes in a 20% polyethylene glycol (with an average molecular weight of 200 g/mol) solution (PEG 200), and nearest neighbor parameters were derived using this data. RNA duplexes are destabilized, on average, 1.02 kcal/mol in the presence of 20% PEG 200. The G degrees(37) values predicted by the nearest neighbor parameters for RNA duplexes in 20% PEG 200 were approximate to 0.65 kcal/mol closer to experimental G degrees(37) values than those predicted by the standard nearest neighbor model. For one DNA sequence in solution with small crowders, the G degrees(37) values predicted by the 20% PEG 200 RNA nearest neighbor parameters were closer to the experimental values than G degrees(37) values predicted by either the RNA or DNA standard nearest neighbor models. This indicates that the nearest neighbor parameters for RNA duplexes in 20% PEG 200 may be generalizable to RNA and DNA duplexes in solutions with small crowding agents.
机译:必须在分子挤压条件下研究RNA,以更好地预测体内RNA的二次结构。没有完成系统研究以确定分子挤在不同长度和序列组合物的RNA双链体上的影响。这里,在20%聚乙二醇中的RNA双链体收集光学熔化,圆形二色性和渗透数据(均分子量为200g / mol)溶液(PEG 200),并且使用该数据导出最近的邻居参数。在20%PEG 200存在下,RNA双工的平均不稳定是1.02kcal / mol的破坏性。由20%PEG 200中RNA双工的最近邻参数预测的G度(37)值近似于0.65千卡/摩尔对于实验性G度(37)值比标准最近邻模型预测的值。对于具有小吹拍的溶液中的一种DNA序列,由20%PEG 200RNA最近邻参数预测的G度(37)值更接近由最近的RNA或DNA标准预测的G度(37)值的实验值。邻居模型。这表明20%PEG 200中的RNA双工的最接近邻参数可以是溶液中的RNA和DNA双链体,其溶液中具有小的挤压剂。

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