Department of Life Science, College of Life Science and Biotechnolgy, Dongguk University-Seoul, Goyang 10326, Korea.
Int J Mol Sci. 2022 Jan 29;23(3):1578. doi: 10.3390/ijms23031578.
The transcriptional repressor Rex plays important roles in regulating the expression of respiratory genes by sensing the reduction-oxidation (redox) state according to the intracellular NAD/NADH balance. Previously, we reported on crystal structures of apo, NAD-bound, and NADH-bound forms of Rex from to analyze the structural basis of transcriptional regulation depending on either NAD or NADH binding. In this study, the crystal structure of Rex in ternary complex with NAD and operator DNA revealed that the -terminal domain of Rex, including the helix-turn-helix motif, forms extensive contacts with DNA in addition to DNA sequence specificity. Structural comparison of the Rex in apo, NAD-bound, NADH-bound, and ternary complex forms provides a comprehensive picture of transcriptional regulation in the Rex. These data demonstrate that the conformational change in Rex when binding with the reduced NADH or oxidized NAD determines operator DNA binding. The movement of the -terminal domains toward the operator DNA was blocked upon binding of NADH ligand molecules. The structural results provide insights into the molecular mechanism of Rex binding with operator DNA and cofactor NAD/NADH, which is conserved among Rex family repressors. Structural analysis of Rex from also supports the previous hypothesis about the NAD/NADH-specific transcriptional regulation mechanism of Rex homologues.
转录抑制剂 Rex 根据细胞内 NAD/NADH 平衡感知氧化还原(redox)状态,在调节呼吸基因表达方面发挥着重要作用。此前,我们报道了来自 的 Rex 的 apo、NAD 结合和 NADH 结合形式的晶体结构,以根据 NAD 或 NADH 结合分析转录调控的结构基础。在这项研究中,Rex 与 NAD 和操纵子 DNA 的三元复合物的晶体结构表明,Rex 的 -末端结构域,包括螺旋-转角-螺旋基序,除了 DNA 序列特异性之外,还与 DNA 形成广泛的接触。Rex 在 apo、NAD 结合、NADH 结合和三元复合物形式的结构比较提供了 Rex 转录调控的全面图景。这些数据表明,当与还原型 NADH 或氧化型 NAD 结合时,Rex 的构象变化决定了操纵子 DNA 的结合。当结合 NADH 配体分子时,-末端结构域向操纵子 DNA 的移动被阻止。结构结果为 Rex 与操纵子 DNA 和辅因子 NAD/NADH 的结合的分子机制提供了深入了解,该机制在 Rex 家族抑制剂中是保守的。来自 的 Rex 的结构分析也支持了关于 Rex 同源物的 NAD/NADH 特异性转录调控机制的先前假设。