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A Two-Component Regulatory System in Transcriptional Control of Photosystem Stoichiometry: Redox-Dependent and Sodium Ion-Dependent Phosphoryl Transfer from Cyanobacterial Histidine Kinase Hik2 to Response Regulators Rre1 and RppA

机译:在光化学计量的转录控制中的两组分调节系统:依赖氧化还原和依赖钠离子的磷酰基从蓝细菌组氨酸激酶Hik2转移至响应调节剂Rre1和RppA。

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摘要

Two-component systems (TCSs) are ubiquitous signaling units found in prokaryotes. A TCS consists of a sensor histidine kinase and a response regulator protein as signal transducers. These regulatory systems mediate acclimation to various environmental changes by coupling environmental cues to gene expression. Hik2 is a sensor histidine kinase and its gene is found in all cyanobacteria. Hik2 is the homolog of Chloroplast Sensor Kinase (CSK), a protein involved in redox regulation of chloroplast gene expression during changes in light quality in plants and algae. Here we describe biochemical characterization of the signaling mechanism of Hik2 and its phosphotransferase activity. Results presented here indicate that Hik2 undergoes autophosphorylation on a conserved histidine residue, and becomes rapidly dephosphorylated by the action of response regulators Rre1 and RppA. We also show that the autophosphorylation of Hik2 is specifically inhibited by sodium ions.
机译:两组分系统(TCS)是原核生物中普遍存在的信号单元。 TCS由传感器组氨酸激酶和响应调节蛋白作为信号转导物组成。这些调节系统通过将环境提示与基因表达相结合来介导对各种环境变化的适应。 Hik2是一种传感器组氨酸激酶,其基因存在于所有蓝细菌中。 Hik2是叶绿体传感器激酶(CSK)的同源物,CSK是一种在植物和藻类的光质变化期间参与叶绿体基因表达的氧化还原调节的蛋白质。在这里,我们描述了Hik2信号传导机制及其磷酸转移酶活性的生化特征。此处给出的结果表明,Hik2在保守的组氨酸残基上进行自磷酸化,并通过响应调节剂Rre1和RppA的作用迅速脱磷酸。我们还显示,Hik2的自磷酸化被钠离子特异性抑制。

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