Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, SAS Nagar, Punjab, India.
Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Mohali, SAS Nagar, India.
Mol Microbiol. 2021 Apr;115(4):591-609. doi: 10.1111/mmi.14625. Epub 2020 Nov 3.
Several GntR/FadR transcriptional regulators govern sugar acid metabolism in bacteria. Although effectors have been identified for a few sugar acid regulators, the mode of effector binding is unknown. Even in the overall FadR subfamily, there are limited details on effector-regulator interactions. Here, we identified the effector-binding cavity in Escherichia coli DgoR, a FadR subfamily transcriptional repressor of D-galactonate metabolism that employs D-galactonate as its effector. Using a genetic screen, we isolated several dgoR superrepressor alleles. Blind docking suggested eight amino acids corresponding to these alleles to form a part of the effector-binding cavity. In vivo and in vitro assays showed that these mutations compromise the inducibility of DgoR without affecting its oligomeric status or affinity for target DNA. Taking Bacillus subtilis GntR as a representative, we demonstrated that the effector-binding cavity is similar among FadR subfamily sugar acid regulators. Finally, a comparison of sugar acid regulators with other FadR members suggested conserved features of effector-regulator recognition within the FadR subfamily. Sugar acid metabolism is widely implicated in bacterial colonization and virulence. The present study sets the basis to investigate the influence of natural genetic variations in FadR subfamily regulators on their sensitivity to sugar acids and ultimately on host-bacterial interactions.
几种 GntR/FadR 转录调控因子控制着细菌中的糖酸代谢。尽管已经鉴定出了一些糖酸调控因子的效应物,但效应物结合的模式尚不清楚。即使在整个 FadR 亚家族中,关于效应物-调控因子相互作用的细节也很有限。在这里,我们鉴定了大肠杆菌 DgoR 的效应物结合腔,DgoR 是 D-半乳糖酸盐代谢的 FadR 亚家族转录抑制剂,它将 D-半乳糖酸盐作为其效应物。通过遗传筛选,我们分离到几个 dgoR 超级阻遏突变体等位基因。盲目对接表明,这些等位基因对应的八个氨基酸构成了效应物结合腔的一部分。体内和体外实验表明,这些突变会降低 DgoR 的诱导性,但不影响其寡聚状态或与靶 DNA 的亲和力。以枯草芽孢杆菌 GntR 为例,我们证明了效应物结合腔在 FadR 亚家族糖酸调控因子中是相似的。最后,将糖酸调控因子与其他 FadR 成员进行比较,表明在 FadR 亚家族中,效应物-调控因子识别具有保守特征。糖酸代谢广泛参与细菌定植和毒力。本研究为研究 FadR 亚家族调控因子的天然遗传变异对其对糖酸的敏感性以及对宿主-细菌相互作用的影响奠定了基础。