Mauro Steven A, Koudelka Gerald B
Department of Biological Sciences, State University of New York at Buffalo, 607 Cooke Hall, North Campus, Box 601300, Buffalo, NY 14260-1300, USA.
J Mol Biol. 2004 Jul 9;340(3):445-57. doi: 10.1016/j.jmb.2004.04.065.
The bacteriophage 434 repressor distinguishes between its six naturally occurring binding sites using indirect readout. In indirect readout, sequence-dependent differences in the structure and flexibility of non-contacted bases in a protein's DNA-binding site modulate the affinity of DNA for protein. The conformation and flexibility of a DNA sequence can be influenced by the interaction of the DNA bases or backbone with solution components. We examined the effect of changing the cation-type present in solution on the stability and structure of 434 repressor complexes with wild-type and mutant OR1 and OR3, binding sites that differ in their contacted and non-contacted base sequences. We find that the affinity of repressor for OR1, but not for OR3, depends remarkably on the type and concentration of monovalent cation. Moreover, the formation of a stable, specific repressor-OR1 complex requires the presence of monovalent cations; however, repressor-OR3 complex formation has no such requirement. Changing monovalent cation type alters the ability of repressor to protect OR1, but not OR3, from *OH radical cleavage. Altering the relative length of the poly(dA) x poly(dT) tract in the non-contacted regions of the OR1 and OR3 can reverse the cation sensitivity of repressor's affinities for these two sites. Taken together these findings show that cation-dependent alterations in DNA structure underlies indirect readout of DNA sequence by 434 repressor and perhaps other proteins.
噬菌体434阻遏蛋白通过间接识别来区分其六个天然存在的结合位点。在间接识别中,蛋白质DNA结合位点中非接触碱基的结构和灵活性的序列依赖性差异会调节DNA与蛋白质的亲和力。DNA序列的构象和灵活性会受到DNA碱基或骨架与溶液成分相互作用的影响。我们研究了改变溶液中阳离子类型对434阻遏蛋白与野生型及突变型OR1和OR3形成的复合物的稳定性和结构的影响,OR1和OR3这两个结合位点在其接触和非接触碱基序列上存在差异。我们发现,阻遏蛋白对OR1的亲和力(而非对OR3的亲和力)显著取决于单价阳离子的类型和浓度。此外,稳定的特异性阻遏蛋白-OR1复合物的形成需要单价阳离子的存在;然而,阻遏蛋白-OR3复合物的形成则没有这种要求。改变单价阳离子类型会改变阻遏蛋白保护OR1(而非OR3)免受羟基自由基切割的能力。改变OR1和OR3非接触区域中聚(dA)×聚(dT)序列的相对长度,可以逆转阻遏蛋白对这两个位点亲和力的阳离子敏感性。综合这些发现表明,DNA结构中阳离子依赖性的改变是434阻遏蛋白以及可能其他蛋白质对DNA序列进行间接识别的基础。