Department of Chemical, Biological & Macromolecular Sciences, S.N. Bose National Centre for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700 098, India.
Biochimie. 2013 Nov;95(11):2168-76. doi: 10.1016/j.biochi.2013.08.015. Epub 2013 Aug 20.
An overwhelming number of structural and functional studies on specific protein-DNA complexes reveal the existence of water molecules at the interaction interface. What role does the interfacial water molecules play in determining the specificity of association is thus a critical question. Herein, we have explored the dynamical role of minor groove water molecules and DNA side chain flexibility in lambda repressor-operator DNA interaction using well-characterized DNA minor groove binder dye, Hoechst 33258. The most striking finding of our studies reveals that the solvation time scale corresponding to the minor groove water molecules (∼50 ps) and DNA side chain flexibility (∼10 ns) remain unaltered even in protein-DNA complex in comparison to unbound operator DNA. The temperature dependent study further reveals the slower exchange of minor grove water molecules with bulk water in DNA-protein complex in comparison to the unbound DNA. Detailed structural studies including circular dichroism (CD) and Förster resonance energy transfer (FRET) have also been performed to elucidate the interaction between protein and DNA.
大量针对特定蛋白-DNA 复合物的结构和功能研究表明,在相互作用界面处存在水分子。因此,界面水分子在确定结合特异性方面所起的作用是一个关键问题。在此,我们使用经过充分表征的 DNA 小沟结合染料 Hoechst 33258 研究了 λ 阻遏蛋白-操纵子 DNA 相互作用中小沟水分子和 DNA 侧链柔性的动态作用。我们研究中最引人注目的发现是,与未结合的操纵子 DNA 相比,即使在蛋白-DNA 复合物中,小沟水分子(50 ps)和 DNA 侧链柔性(10 ns)的溶剂化时间尺度保持不变。温度依赖性研究进一步表明,与未结合的 DNA 相比,DNA-蛋白复合物中小沟水分子与体相水分子的交换更慢。我们还进行了详细的结构研究,包括圆二色性(CD)和荧光共振能量转移(FRET),以阐明蛋白和 DNA 之间的相互作用。