Physics Department, Williams College, Williamstown, Massachusetts, USA.
Biophys J. 2013 Jan 22;104(2):482-7. doi: 10.1016/j.bpj.2012.12.017.
Small RNA-mRNA binding is an essential step in RNA interference, an important cellular regulatory process. Calculations of binding free energy have been used in binding site prediction, but the cost of stretching the mRNA loop when the small RNA-mRNA duplex forms requires further exploration. Here, using both polymer physics theory and simulations, we estimate the free energy of a stretched mRNA loop. We find loop stretching significantly increases the free energy of 3' supplementary/compensatory miRNA binding and siRNA binding to mRNA hairpin loops. We also make the observation that sites where 3' supplementary binding is available may bind at the seed only, and that loop stretching often favors seed-only binding over seed plus 3' supplementary binding in mRNA hairpins.
小 RNA-mRNA 结合是 RNA 干扰的一个重要步骤,这是一种重要的细胞调控过程。结合自由能的计算已被用于结合位点预测,但当小 RNA-mRNA 双链体形成时拉伸 mRNA 环的成本仍需要进一步探索。在这里,我们使用聚合物物理理论和模拟来估计拉伸的 mRNA 环的自由能。我们发现,环拉伸显著增加了 3' 补充/补偿 miRNA 结合和 siRNA 结合到 mRNA 发夹环的自由能。我们还观察到,有 3' 补充结合的位点可能只结合在种子上,并且环拉伸通常有利于种子结合,而不是种子加 3' 补充结合在 mRNA 发夹中。