Department of Biological Sciences, Purdue University, West Lafayette, Indiana, United States of America.
PLoS One. 2012;7(1):e30102. doi: 10.1371/journal.pone.0030102. Epub 2012 Jan 23.
Expression of KdpFABC, a K(+) pump that restores osmotic balance, is controlled by binding of the response regulator KdpE to a specific DNA sequence (kdpFABC(BS)) via the winged helix-turn-helix type DNA binding domain (KdpE(DBD)). Exploration of E. coli KdpE(DBD) and kdpFABC(BS) interaction resulted in the identification of two conserved, AT-rich 6 bp direct repeats that form half-sites. Despite binding to these half-sites, KdpE(DBD) was incapable of promoting gene expression in vivo. Structure-function studies guided by our 2.5 Å X-ray structure of KdpE(DBD) revealed the importance of residues R193 and R200 in the α-8 DNA recognition helix and T215 in the wing region for DNA binding. Mutation of these residues renders KdpE incapable of inducing expression of the kdpFABC operon. Detailed biophysical analysis of interactions using analytical ultracentrifugation revealed a 2∶1 stoichiometry of protein to DNA with dissociation constants of 200±100 and 350±100 nM at half-sites. Inactivation of one half-site does not influence binding at the other, indicating that KdpE(DBD) binds independently to the half-sites with approximately equal affinity and no discernable cooperativity. To our knowledge, these data are the first to describe in quantitative terms the binding at half-sites under equilibrium conditions for a member of the ubiquitous OmpR/PhoB family of proteins.
KdpFABC 的表达受响应调节蛋白 KdpE 通过翼螺旋-转角-螺旋型 DNA 结合域(KdpE(DBD))与特定 DNA 序列(kdpFABC(BS))结合来控制。对大肠杆菌 KdpE(DBD)和 kdpFABC(BS)相互作用的探索导致了两个保守的富含 AT 的 6 bp 直接重复序列的鉴定,这些序列形成半位点。尽管 KdpE(DBD)与这些半位点结合,但它无法在体内促进基因表达。我们对 KdpE(DBD)的 2.5 Å X 射线结构的结构-功能研究揭示了 α-8 DNA 识别螺旋中的残基 R193 和 R200 以及翼区中的残基 T215 对 DNA 结合的重要性。这些残基的突变使 KdpE 无法诱导 kdpFABC 操纵子的表达。使用分析超速离心的详细生物物理相互作用分析表明,蛋白质与 DNA 的比例为 2∶1,在半位点处的解离常数为 200±100 和 350±100 nM。一个半位点的失活不会影响另一个半位点的结合,表明 KdpE(DBD)以大致相等的亲和力和无明显协同性独立结合半位点。据我们所知,这些数据是首次以定量方式描述普遍存在的 OmpR/PhoB 蛋白家族成员在平衡条件下在半位点的结合。