Frontier Institute for Biomolecular Engineering Research (FIBER), Konan University, 7-1-20 Minatojima-minamimachi, Kobe 650-0047, Japan.
J Phys Chem B. 2011 Dec 1;115(47):13862-72. doi: 10.1021/jp207856p. Epub 2011 Nov 9.
Four nucleic acid duplexes-DNA/RNA hybrid, RNA/DNA hybrid, RNA duplex, and DNA duplex-were studied under molecular crowding conditions of osmolytes. Destabilization of duplexes (ΔΔG°(25)) indicated that the ΔΔG°(25) values of hybrids were intermediate between those of DNA and RNA duplexes. In the presence of polyethylene glycol 200, the ΔΔG°(25) values were estimated to be +3.0, +3.5, +3.5, and +4.1 kcal mol(-1) for the DNA duplex, DNA/RNA hybrid, RNA/DNA hybrid, and RNA duplex, respectively. Differences in the number of water molecules taken up (-Δn(w)) upon duplex formations between 0 and 37 °C (Δ(-Δn(w))) were estimated to be 44.8 and 59.7 per duplex structure for the DNA/RNA and RNA/DNA hybrids, respectively. While the Δ(-Δn(w)) value for the DNA/RNA hybrid was intermediate between those of the DNA (26.1) and RNA (59.2) duplexes, the value for RNA/DNA hybrid was close to that of RNA duplex. These differences in the thermodynamic parameters and hydration are probably a consequence of the enhanced global flexibility of the RNA/DNA hybrid structure relative to the DNA/RNA hybrid structure observed in molecular dynamics simulations. This molecular crowding study provides information not only on hydration but also on the flexibility of the conformation of nucleic acid duplexes.
四种核酸双链 - DNA/RNA 杂交体、RNA/DNA 杂交体、RNA 双链和 DNA 双链 - 在渗透剂分子拥挤条件下进行了研究。双链体的不稳定性(ΔΔG°(25))表明,杂交体的 ΔΔG°(25) 值介于 DNA 和 RNA 双链体之间。在聚乙二醇 200 的存在下,DNA 双链体、DNA/RNA 杂交体、RNA/DNA 杂交体和 RNA 双链体的 ΔΔG°(25) 值分别估计为+3.0、+3.5、+3.5 和+4.1 kcal mol(-1)。在 0 至 37°C 之间形成双链体时吸收的水分子数差异(Δ(-Δn(w)))分别估计为 DNA/RNA 杂交体和 RNA/DNA 杂交体的 44.8 和 59.7 个每个双链体结构。虽然 DNA/RNA 杂交体的 Δ(-Δn(w)) 值介于 DNA(26.1)和 RNA(59.2)双链体之间,但 RNA/DNA 杂交体的值接近 RNA 双链体。这些热力学参数和水合作用的差异可能是 RNA/DNA 杂交体结构相对于分子动力学模拟中观察到的 DNA/RNA 杂交体结构的整体灵活性增强的结果。这项分子拥挤研究不仅提供了有关水合作用的信息,还提供了有关核酸双链构象灵活性的信息。