Microbiology and Molecular Genetics Program, Graduate Division of Biological and Biomedical Sciences, Laney Graduate School, Emory University, Atlanta, Georgia, USA.
Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia, USA.
Mol Microbiol. 2023 May;119(5):586-598. doi: 10.1111/mmi.15054. Epub 2023 Mar 25.
Bacterial two-component signal transduction systems provide sensory inputs for appropriately adapting gene expression. These systems rely on a histidine kinase that phosphorylates a response regulator which alters gene expression. Several two-component systems include additional sensory components that can activate the histidine kinase. In Escherichia coli, the lipoprotein NlpE was identified as a sensor for the Cpx cell envelope stress response. It has remained unclear how NlpE signals to Cpx in the periplasm. In this study, we used a combination of genetics, biochemistry, and AlphaFold2 complex modeling to uncover the molecular details of how NlpE triggers the Cpx response through an interaction with the CpxA histidine kinase. Remarkably, only a short loop of NlpE is required to activate the Cpx response. A single substitution in this loop inactivates NlpE signaling to Cpx and abolishes an in vivo biochemical NlpE:CpxA interaction. An independent AlphaFold multimer prediction supported a role for the loop and predicted an interaction interface at CpxA. Mutations in this CpxA region specifically blind the histidine kinase to NlpE activation but preserve the ability to respond to other cell envelope stressors. Hence, our work additionally reveals a previously unrecognized complexity in signal integration by the CpxA periplasmic sensor domain.
细菌双组分信号转导系统为适当适应基因表达提供了感觉输入。这些系统依赖于磷酸化反应调节因子的组氨酸激酶,从而改变基因表达。有几个双组分系统包括可以激活组氨酸激酶的额外感觉组件。在大肠杆菌中,脂蛋白 NlpE 被鉴定为 Cpx 细胞包膜应激反应的传感器。目前尚不清楚 NlpE 如何在周质中向 Cpx 发出信号。在这项研究中,我们使用遗传学、生物化学和 AlphaFold2 复合物建模的组合来揭示 NlpE 通过与 CpxA 组氨酸激酶相互作用触发 Cpx 反应的分子细节。值得注意的是,只有 NlpE 的一个短环就足以激活 Cpx 反应。该环中的单个取代会使 NlpE 对 Cpx 的信号失活,并消除体内生化 NlpE:CpxA 相互作用。独立的 AlphaFold 多聚体预测支持该环的作用,并预测了 CpxA 上的相互作用界面。该 CpxA 区域的突变特异性使组氨酸激酶对 NlpE 激活失去敏感性,但保留了对其他细胞包膜应激原的反应能力。因此,我们的工作还揭示了 CpxA 周质传感器结构域中信号整合的先前未被认识到的复杂性。