Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Nanos, Singapore 138669, Singapore.
Institute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673, Singapore.
Structure. 2019 Feb 5;27(2):302-314.e4. doi: 10.1016/j.str.2018.10.012. Epub 2018 Nov 29.
Histidine kinases (HKs) funnel diverse environmental stimuli into a single autophosphorylation event at a conserved histidine residue. The HK EnvZ is a global sensor of osmolality and cellular acid pH. In previous studies, we discovered that osmosensing in EnvZ was mediated through osmolyte-induced stabilization of the partially disordered helical backbone spanning the conserved histidine autophosphorylation site (His). Here, we describe how backbone stabilization leads to changes in the microenvironment of His, resulting in enhanced autophosphorylation through relief of inhibition and repositioning of critical side chains and imidazole rotamerization. The conserved His-Asp/Glu dyad within the partially structured helix is equally geared to respond to acid pH, an alternative environmental stimulus in bacteria. This high-resolution "double-clamp" switch model proposes that a His-Asp/Glu dyad functions as an integrative node for regulating autophosphorylation in HKs. Because the His-Asp/Glu dyad is highly conserved in HKs, this study provides a universal model for describing HK function.
组氨酸激酶(HKs)将各种环境刺激转化为保守组氨酸残基上的单一自动磷酸化事件。HK EnvZ 是渗透压和细胞酸 pH 值的全局传感器。在之前的研究中,我们发现 EnvZ 的渗透压感应是通过渗透剂诱导的跨越保守组氨酸自动磷酸化位点(His)的部分无序螺旋骨架的稳定来介导的。在这里,我们描述了骨架稳定如何导致 His 微环境发生变化,从而通过解除抑制和重新定位关键侧链和咪唑旋转来增强自动磷酸化。部分结构螺旋内的保守 His-Asp/Glu 二联体同样能够响应细菌中的另一种环境刺激——酸性 pH 值。这种高分辨率的“双夹”开关模型表明,His-Asp/Glu 二联体作为调节 HKs 自动磷酸化的整合节点。由于 HKs 中的 His-Asp/Glu 二联体高度保守,因此该研究为描述 HK 功能提供了一个通用模型。