自磷酸化
解淀粉芽孢杆菌
组氨酸激酶
磷酸转移酶
生物化学
组氨酸
精氨酸激酶
生物
双组分调节系统
蛋白激酶结构域
蛋白激酶A
激酶
化学
磷酸化
酶
氨基酸
突变体
基因
精氨酸
发酵
作者
Lulu Wang,Ruochen Fan,Zhuting Li,Lina Wang,Xue Bai,Tingting Bu,Yuesheng Dong,Yongbin Xu,Chunshan Quan
摘要
Abstract The ComPA two-component signal transduction system (TCS) is essential in Bacillus spp. However, the molecular mechanism of the histidine kinase ComP remains unclear. Here, we predicted the structure of ComP from Bacillus amyloliquefaciens Q-426 (BaComP) using an artificial intelligence approach, analyzed the structural characteristics based on the molecular docking results and compared homologous proteins, and then investigated the biochemical properties of BaComP. We obtained a truncated ComPS protein with high purity and correct folding in solution based on the predicted structures. The expression and purification of BaComP proteins suggested that the subdomains in the cytoplasmic region influenced the expression and stability of the recombinant proteins. ComPS is a bifunctional enzyme that exhibits the activity of both histidine kinase and phosphotransferase. We found that His571 played an obligatory role in the autophosphorylation of BaComP based on the analysis of the structures and mutagenesis studies. The molecular docking results suggested that the HATPase_c domain contained an ATP-binding pocket, and the ATP molecule was coordinated by eight conserved residues from the N, G1, and G2 boxes. Our study provides novel insight into the histidine kinase BaComP and its homologous proteins.
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