Department of Chemistry, University of Nebraska, Lincoln, Nebraska 68588-0304, USA.
Biochemistry. 2009 Mar 3;48(8):1801-9. doi: 10.1021/bi8018724.
Studies of the binding and bending of the AdMLP TATA sequence (TATAAAAG) by the core domain of yeast TBP allow quantitation of the roles of the N-terminal domains of yeast and human TBP. All three proteins bind DNA via a three-step mechanism with no evidence for an initially bound but unbent DNA. The large enthalpy and entropy of activation for the first step in yTBP binding can now be assigned to movement of the NTD from the DNA binding pocket and not to energetics of DNA bending. The energetic patterns for hTBP and cTBP suggest that the 158-amino acid NTD in hTBP does not initially occupy the DNA binding pocket. Despite the appearance of similar energetics for hTBP and cTBP, order of magnitude differences in rate constants lead to differing populations of intermediates during DNA binding. We find that the NTDs destabilize the three bound forms of DNA for both yTBP and hTBP. For all three proteins, the DNA bend angle (theta) depends on the TATA sequence, with theta for cTBP and hTBP being greater than that for yTBP. For all three proteins, theta for the G6 variant (TATAAGAG) varies with temperature and increases in the presence of osmolyte to be similar to that of AdMLP. Crystallographic studies of cTBP binding to a number of variants had shown no dependence of DNA bending on sequence. The results reported here reveal a clear structural difference for the bound DNA in solution versus the crystal; we attribute the difference to the presence of osmolytes in the crystals.
酵母 TBP 核心结构域与 AdMLP TATA 序列(TATAAAAG)的结合和弯曲研究,使我们能够定量研究酵母和人 TBP 的 N 端结构域的作用。所有三种蛋白质都通过三步机制与 DNA 结合,没有证据表明存在最初结合但未弯曲的 DNA。现在可以将 yTBP 结合的第一步中较大的焓变和熵变归因于 NTD 从 DNA 结合口袋的移动,而不是 DNA 弯曲的能量学。hTBP 和 cTBP 的能量模式表明,hTBP 中 158 个氨基酸的 NTD 最初并不占据 DNA 结合口袋。尽管 hTBP 和 cTBP 的能量学表现相似,但速率常数的数量级差异导致在 DNA 结合过程中存在不同的中间体种群。我们发现 NTDs 会使 yTBP 和 hTBP 的三种结合形式的 DNA 不稳定。对于所有三种蛋白质,DNA 弯曲角度(theta)取决于 TATA 序列,cTBP 和 hTBP 的 theta 大于 yTBP 的 theta。对于所有三种蛋白质,G6 变体(TATAAGAG)的 theta 随温度变化而变化,并且在存在渗透剂的情况下会增加,使其与 AdMLP 的 theta 相似。cTBP 与多种变体结合的晶体学研究表明,DNA 弯曲与序列无关。这里报道的结果揭示了结合 DNA 在溶液中与晶体中的明显结构差异;我们将差异归因于晶体中渗透剂的存在。