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Selective binding of the TATA box-binding protein to the TATA box-containing promoter: analysis of structural and energetic factors.

机译:TATA盒结合蛋白与TATA盒含启动子的选择性结合:结构和能量因素分析。

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摘要

We report the results of an energy-based exploration of the components of selective recognition of the TATA box-binding protein (TBP) to a TATA box sequence that includes 1) the interaction between the hydrophobic Leu, Pro, and Phe residues of TBP with the TA, AT, AA, TT, and CG steps, by ab initio quantum mechanical calculations; and 2) the free energy penalty, calculated from molecular dynamics/potential of mean force simulations, for the conformational transition from A-DNA and B-DNA into the TA-DNA form of DNA observed in a complex with TBP. The GTAT, GATT, GAAT, and GTTT tetramers were explored. The results show that 1) the discrimination of TA, AT, AA, TT, or CG steps by TBP cannot rest on their interaction with the inserting Phe side chains; 2) the steric clash between the bulky and hydrophobic Pro and Leu residues and the protruding -NH2 group of guanine is responsible for the observed selectivity against any Gua-containing basepair; 3) the Pro and Leu residues cannot selectively discriminate among TA, AT, AA, or TT steps; and 4) the calculated energy required to achieve the TA-DNA conformation of DNA that is observed in the complex with TBP appears to be a key determinant for the observed selectivity against the AT, AA, and TT steps. The simulations also indicate that only the TA step can form a very efficient interbase hydrogen bond network in the TA-DNA conformation. Such an energetically stabilizing network is not achievable in the AA and TT steps. While it is viable in the AT step, structural constraints render the hydrogen bonding network energetically ineffective there.
机译:我们报告了基于能量的探索性选择性识别TATA盒结合蛋白(TBP)到TATA盒序列的组成部分的结果,该序列包括1)TBP的疏水性Leu,Pro和Phe残基之间的相互作用通过从头算起的量子力学计算完成TA,AT,AA,TT和CG步骤; 2)从分子动力学/平均力模拟潜能计算得出的自由能罚分,是在与TBP的复合物中观察到的从A-DNA和B-DNA到DNA的TA-DNA形态的构象转变。探索了GTAT,GATT,GAAT和GTTT四聚体。结果表明:1)TBP对TA,AT,AA,TT或CG步骤的区分不能仅仅取决于它们与插入的Phe侧链的相互作用; 2)庞大的疏水性Pro和Leu残基之间的空间冲突以及鸟嘌呤的突出的-NH2基团是观察到的对任何含Gua的碱基对的选择性的原因; 3)Pro和Leu残基无法选择性地区分TA,AT,AA或TT步骤; 4)与TBP配合物中观察到的实现DNA的TA-DNA构象所需的计算能量似乎是观察到的针对AT,AA和TT步骤选择性的关键决定因素。模拟还表明,只有TA步骤才能在TA-DNA构象中形成非常有效的碱基间氢键网络。在AA和TT步骤中无法实现这种能量稳定的网络。尽管在AT步骤中可行,但结构上的限制使氢键合网络在能量上无效。

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