VanSchouwen Bryan M B, Gordon Heather L, Rothstein Stuart M, Komeiji Yuto, Fukuzawa Kaori, Tanaka Shigenori
Department of Chemistry and Centre for Biotechnology, Brock University, 500 Glenridge Avenue, St. Catharines, Ontario, Canada.
Comput Biol Chem. 2008 Jun;32(3):149-58. doi: 10.1016/j.compbiolchem.2008.01.001. Epub 2008 Jan 19.
The cyclic AMP receptor protein (CRP) of Escherichia coli binds preferentially to DNA sequences possessing a T:A base pair at position 6 (at which the DNA becomes kinked), but with which it does not form any direct interactions. It has been proposed that indirect readout is involved in CRP-DNA binding, in which specificity for this base pair is primarily related to sequence effects on the energetic susceptibility of the DNA to kink formation. In the current study, the possibility of contributions to indirect readout by water-mediated hydrogen bonding of CRP with the T:A base pair was investigated. A 1.0 ns molecular dynamics simulation of the CRP-cAMP-DNA complex in explicit solvent was performed, and assessed for water-mediated CRP-DNA hydrogen bonds; results were compared to several X-ray crystal structures of comparable complexes. While several water-mediated CRP-DNA hydrogen bonds were identified, none of these involved the T:A base pair at position 6. Therefore, the sequence specificity for this base pair is not likely enhanced by water-mediated hydrogen bonding with the CRP.
大肠杆菌的环磷酸腺苷受体蛋白(CRP)优先结合在第6位具有T:A碱基对(DNA在此处发生扭结)的DNA序列,但它与该碱基对不形成任何直接相互作用。有人提出,CRP与DNA的结合涉及间接识别,其中对该碱基对的特异性主要与序列对DNA形成扭结的能量敏感性的影响有关。在当前的研究中,研究了CRP通过与T:A碱基对的水介导氢键对间接识别做出贡献的可能性。在显式溶剂中对CRP-cAMP-DNA复合物进行了1.0纳秒的分子动力学模拟,并评估了水介导的CRP-DNA氢键;将结果与几种类似复合物的X射线晶体结构进行了比较。虽然鉴定出了几种水介导的CRP-DNA氢键,但这些都不涉及第6位的T:A碱基对。因此,与CRP的水介导氢键不太可能增强该碱基对的序列特异性。