Li L, Matthews K S
Department of Biochemistry & Cell Biology, Rice University, Houston, Texas 77251, USA.
Biochemistry. 1997 Jun 10;36(23):7003-11. doi: 10.1021/bi962966m.
The amino acid sequences of the homeodomains (HD) within the Ultrabithorax (Ubx) and Deformed (Dfd) proteins from Drosophila melanogaster are highly conserved despite distinct genetic regulatory functions for these proteins in embryonic development. We reported recently that Ubx-HD binding to a single target site displayed significantly increased affinity and greater salt concentration dependence at lower pH; in contrast, Dfd-HD did not show pH dependence in its DNA binding properties [Li, L., et al. (1996) Biochemistry 35, 9832-9839]. We demonstrate in this study that water activity differentially affects Ubx-HD and Dfd-HD DNA binding affinity. The sensitivity of the protein-DNA binding constant to osmotic pressures generated by neutral solutes was measured, and the formation of the Ubx-HD-DNA complex is associated with significantly greater water release than that of the Dfd-HD-DNA complex. No influence of pH on water release was detected for either HD. Experiments with chimeric Ubx-Dfd homeodomains demonstrated that the C-terminal region of the Ubx-HD is the primary determinant for the greater water release associated with DNA binding for this protein. DNA sequences do not exert a significant effect on the magnitude of water release associated with protein-DNA binding for Ubx-HD and the chimeric HD, UDU.
尽管来自黑腹果蝇的超双胸蛋白(Ubx)和变形蛋白(Dfd)在胚胎发育中具有不同的基因调控功能,但其同源结构域(HD)内的氨基酸序列高度保守。我们最近报道,Ubx-HD与单个靶位点的结合在较低pH值下显示出显著增加的亲和力和对盐浓度的更大依赖性;相比之下,Dfd-HD在其DNA结合特性中未显示出pH依赖性[Li, L.,等人(1996年)《生物化学》35卷,9832 - 9839页]。我们在本研究中证明,水分活度对Ubx-HD和Dfd-HD的DNA结合亲和力有不同影响。测量了蛋白质-DNA结合常数对中性溶质产生的渗透压的敏感性,并且Ubx-HD-DNA复合物的形成与比Dfd-HD-DNA复合物显著更多的水分释放相关。对于任何一种HD,均未检测到pH对水分释放的影响。用嵌合的Ubx-Dfd同源结构域进行的实验表明,Ubx-HD的C末端区域是与该蛋白质DNA结合相关的更多水分释放的主要决定因素。DNA序列对与Ubx-HD和嵌合HD(UDU)的蛋白质-DNA结合相关的水分释放量没有显著影响。