Mauro Steven A, Pawlowski David, Koudelka Gerald B
Department of Biological Sciences, University at Buffalo, Buffalo, New York 14260-1300, USA.
J Biol Chem. 2003 Apr 11;278(15):12955-60. doi: 10.1074/jbc.M212667200. Epub 2003 Feb 4.
The sequence of non-contacted bases at the center of the 434 repressor binding site affects the strength of the repressor-DNA complex by influencing the structure and flexibility of DNA (Koudelka, G. B., and Carlson, P. (1992) Nature 355, 89-91). We synthesized 434 repressor binding sites that differ in their central sequence base composition to test the importance of minor groove substituents and/or the number of base pair hydrogen bonds between these base pairs on DNA structure and strength of the repressor-DNA complex. We show here that the number of base pair H-bonds between the central bases apparently has no role in determining the relative affinity of a DNA site for repressor. Instead we find that the affinity of DNA for repressor depends on the absence or presence the N2-NH(2) group on the purine bases at the binding site center. The N2-NH(2) group on bases at the center of the 434 binding site appears to destabilize 434 repressor-DNA complexes by decreasing the intimacy of the specific repressor-DNA contacts, while increasing the reliance on protein contacts to the DNA phosphate backbone. Thus, the presence of an N2-NH(2) group on the purines at the center of a binding site globally alters the precise conformation of the protein-DNA interface.
434阻遏蛋白结合位点中心未接触碱基的序列,通过影响DNA的结构和柔韧性,来影响阻遏蛋白 - DNA复合物的强度(库德尔卡,G.B.,和卡尔森,P.(1992年)《自然》355卷,89 - 91页)。我们合成了中心序列碱基组成不同的434阻遏蛋白结合位点,以测试小沟取代基和/或这些碱基对之间碱基对氢键数量对DNA结构以及阻遏蛋白 - DNA复合物强度的重要性。我们在此表明,中心碱基之间的碱基对氢键数量显然在决定DNA位点对阻遏蛋白的相对亲和力方面不起作用。相反,我们发现DNA对阻遏蛋白的亲和力取决于结合位点中心嘌呤碱基上是否存在N2 - NH₂基团。434结合位点中心碱基上的N2 - NH₂基团似乎会通过降低特定阻遏蛋白 - DNA接触的紧密程度,同时增加对蛋白质与DNA磷酸骨架接触的依赖,来使434阻遏蛋白 - DNA复合物不稳定。因此,结合位点中心嘌呤上N2 - NH₂基团的存在会全局改变蛋白质 - DNA界面的精确构象。