Hanks-Type Serine/Threonine Protein Kinases and Phosphatases in Bacteria: Roles in Signaling and Adaptation to Various Environments

生物 激酶 信号转导 响应调节器 磷酸化 细胞生物学 组氨酸激酶 丝氨酸 磷酸酶 生物化学 蛋白激酶A 蛋白质磷酸化 丝氨酸苏氨酸激酶 细胞信号 苏氨酸 TOR信号 基因 组氨酸 突变体
作者
Monika Janczarek,José‐María Vinardell,Paulina Lipa,Magdalena Anna Karaś
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:19 (10): 2872-2872 被引量:62
标识
DOI:10.3390/ijms19102872
摘要

Reversible phosphorylation is a key mechanism that regulates many cellular processes in prokaryotes and eukaryotes. In prokaryotes, signal transduction includes two-component signaling systems, which involve a membrane sensor histidine kinase and a cognate DNA-binding response regulator. Several recent studies indicate that alternative regulatory pathways controlled by Hanks-type serine/threonine kinases (STKs) and serine/threonine phosphatases (STPs) also play an essential role in regulation of many different processes in bacteria, such as growth and cell division, cell wall biosynthesis, sporulation, biofilm formation, stress response, metabolic and developmental processes, as well as interactions (either pathogenic or symbiotic) with higher host organisms. Since these enzymes are not DNA-binding proteins, they exert the regulatory role via post-translational modifications of their protein targets. In this review, we summarize the current knowledge of STKs and STPs, and discuss how these enzymes mediate gene expression in prokaryotes. Many studies indicate that regulatory systems based on Hanks-type STKs and STPs play an essential role in the regulation of various cellular processes, by reversibly phosphorylating many protein targets, among them several regulatory proteins of other signaling cascades. These data show high complexity of bacterial regulatory network, in which the crosstalk between STK/STP signaling enzymes, components of TCSs, and the translational machinery occurs. In this regulation, the STK/STP systems have been proved to play important roles.
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