Koblan K S, Ackers G K
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, Missouri 63110.
Biochemistry. 1992 Jan 14;31(1):57-65. doi: 10.1021/bi00116a010.
Binding of cI repressor to DNA fragments containing the three specific binding sites of the right operator (OR) of bacteriophage lambda was studied in vitro over the temperature range 5-37 degrees C by quantitative footprint titration. The individual-site isotherms, obtained for binding repressor dimers to each site of wild-type OR and to appropriate mutant operator templates, were analyzed for the Gibbs energies of intrinsic binding and pairwise cooperative interactions. It is found that dimer affinity for each of the three sites varies inversely with temperature, i.e., the binding reactions are enthalpy driven, unlike many protein-DNA reactions. By contrast, the magnitude of the pairwise cooperativity terms describing interaction between adjacently site-bound repressor dimers is quite small. This result in combination with the recent finding that repressor monomer-dimer assembly is highly enthalpy driven (with delta H degrees = -16 kcal mol-1) [Koblan, K. S., & Ackers, G. K. (1991) Biochemistry 30, 7817-7821] indicates that the associative contacts between site-bound repressors that mediate cooperativity are unlikely to be the same as those responsible for dimerization. The intrinsic binding enthalpies for all three sites are negative (exothermic) and nearly temperature-invariant, indicating no heat capacity changes on the scale of those inferred in other protein-DNA systems. However, the three operator sites are affected differentially by temperature: the intrinsic binding free energies for sites OR1 and OR3 change in parallel over the entire range, delta H0OR1 = -23.3 +/- 4.0 kcal mol-1 and delta H0OR3 = -22.7 +/- 1.2 kcal mol-1.(ABSTRACT TRUNCATED AT 250 WORDS)
通过定量足迹滴定法,在5至37摄氏度的温度范围内,对λ噬菌体右操纵子(OR)的三个特异性结合位点的DNA片段与cI阻遏蛋白的结合进行了体外研究。获得了阻遏蛋白二聚体与野生型OR的每个位点以及合适的突变操纵子模板结合的单位点等温线,并分析了内在结合和成对协同相互作用的吉布斯自由能。结果发现,二聚体对三个位点中每个位点的亲和力都随温度呈反比变化,即结合反应是由焓驱动的,这与许多蛋白质-DNA反应不同。相比之下,描述相邻位点结合的阻遏蛋白二聚体之间相互作用的成对协同项的大小相当小。这一结果与最近发现的阻遏蛋白单体-二聚体组装是高度由焓驱动的(ΔH° = -16 kcal/mol)[Koblan, K. S., & Ackers, G. K. (1991) Biochemistry 30, 7817 - 7821]相结合,表明介导协同作用的位点结合阻遏蛋白之间的缔合接触不太可能与负责二聚化的接触相同。所有三个位点的内在结合焓均为负(放热)且几乎不随温度变化,表明在其他蛋白质-DNA系统中推断的热容量变化范围内没有热容量变化。然而,三个操纵子位点受温度的影响不同:位点OR1和OR3的内在结合自由能在整个范围内平行变化,ΔH0OR1 = -23.3 ± 4.0 kcal/mol,ΔH0OR3 = -22.7 ± 1.2 kcal/mol。(摘要截短于250字)