Department of Life Science, Dongguk University-Seoul, Ilsandong-gu, Goyang-si, Gyeonggi-do, 10326, Republic of Korea.
Sci Rep. 2018 Sep 5;8(1):13244. doi: 10.1038/s41598-018-31676-z.
The cellular redox state of organisms continues to fluctuate during the metabolism. All organisms have various sensors that help detect and adapt to changes in the redox state. Nicotinamide adenine dinucleotides (NAD/NADH), which are involved in various cellular metabolic activities as cofactors, have been revealed as the key molecules sensing the intra-cellular redox state. The Rex family members are well conserved transcriptional repressors that regulate the expression of respiratory genes by sensing the redox state according to the intra-cellular NAD/NADH balance. Herein, we reported crystal structures of apo and NAD- and NADH-bound forms of Rex from Thermotoga maritima to analyse the structural basis of transcriptional regulation depending on either NAD or NADH binding. The different orientation of the reduced nicotinamide group to helix α9 caused the rearrangement of N-terminal DNA binding domain, thus resulting in closed form of Rex to dissociate from cognate DNA. The structural data of Rex from T. maritima also support the previous redox-sensing mechanism models of Rex homologues.
生物体的细胞氧化还原状态在代谢过程中持续波动。所有生物体都有各种传感器,可以帮助检测和适应氧化还原状态的变化。烟酰胺腺嘌呤二核苷酸(NAD/NADH)作为辅因子参与各种细胞代谢活动,已被揭示为感应细胞内氧化还原状态的关键分子。Rex 家族成员是高度保守的转录阻遏物,它们根据细胞内 NAD/NADH 平衡感应氧化还原状态,调节呼吸基因的表达。在此,我们报道了来自 Thermotoga maritima 的 Rex 的 apo 和 NAD-和 NADH 结合形式的晶体结构,以分析依赖于 NAD 或 NADH 结合的转录调节的结构基础。还原型烟酰胺基团与α9 螺旋的不同取向导致 N 端 DNA 结合域的重排,从而导致 Rex 从同源 DNA 解离的封闭形式。来自 T. maritima 的 Rex 的结构数据也支持了之前 Rex 同源物的氧化还原感应机制模型。