Fried M, Crothers D M
Nucleic Acids Res. 1981 Dec 11;9(23):6505-25. doi: 10.1093/nar/9.23.6505.
We describe the use of gel electrophoresis in studies of equilibrium binding, site distribution, and kinetics of protein-DNA interactions. The method, which we call protein distribution analysis, is simple, sensitive and yields thermodynamically rigorous results. It is particularly well suited to studies of simultaneous binding of several proteins to a single nucleic acid. In studies of the lac repressor-operator interaction, we found that binding to the so-called third operator site (03) is 15-18 fold weaker than operator binding, and that the binding reactions with the first and third operators are uncoupled, implying that there is no communication between the sites. Pseudo-first order dissociation kinetics of the repressor-203 bp operator complex were found to be temperature sensitive, with delta E of 80 kcal mol-1 above 29 degrees C and 26 kcal mol-1 below. The half life of the complex (5 min at 21 degrees C) is shorter than that reported for very high molecular weight operator-containing DNAs, but longer than values reported for much shorter fragments. The binding of lac repressor core to DNA could not be detected by this technique: the maximum binding constant consistent with this finding is 10(5) M-1.
我们描述了凝胶电泳在蛋白质 - DNA相互作用的平衡结合、位点分布和动力学研究中的应用。我们将该方法称为蛋白质分布分析,它简单、灵敏,能产生热力学严谨的结果。它特别适合于研究几种蛋白质同时与单个核酸结合的情况。在对乳糖阻遏物 - 操纵基因相互作用的研究中,我们发现与所谓的第三个操纵基因位点(O3)的结合比与操纵基因的结合弱15 - 18倍,并且与第一个和第三个操纵基因的结合反应是不相关的,这意味着这些位点之间没有通信。发现阻遏物 - 203 bp操纵基因复合物的准一级解离动力学对温度敏感,在29℃以上时ΔE为80 kcal mol⁻¹,在29℃以下时为26 kcal mol⁻¹。复合物的半衰期(在21℃时为5分钟)比报道的含非常高分子量操纵基因的DNA的半衰期短,但比报道的短得多的片段的值长。用该技术无法检测到乳糖阻遏物核心与DNA的结合:与这一发现一致的最大结合常数为10⁵ M⁻¹。