响应调节器
双组分调节系统
组氨酸激酶
磷酸化
转录调控
毒力
信号转导
抄写(语言学)
基因
转录因子
激酶
细胞生物学
调节器
生物
化学
生物化学
细菌蛋白
突变体
哲学
语言学
作者
Wen Liu,Xiang Li,Hong Qi,Yuning Wu,Jing Qu,Zhiyong Yin,Xuejuan Gao,Aidong Han,Jianwei Shuai
出处
期刊:Bioinformatics
[Oxford University Press]
日期:2021-02-26
卷期号:37 (17): 2682-2690
被引量:12
标识
DOI:10.1093/bioinformatics/btab138
摘要
Abstract Motivation Transcriptional surges generated by two-component systems (TCSs) have been observed experimentally in various bacteria. Suppression of the transcriptional surge may reduce the activity, virulence and drug resistance of bacteria. In order to investigate the general mechanisms, we use a PhoP/PhoQ TCS as a model system to derive a comprehensive mathematical modeling that governs the surge. PhoP is a response regulator, which serves as a transcription factor under a phosphorylation-dependent modulation by PhoQ, a histidine kinase. Results Our model reveals two major signaling pathways to modulate the phosphorylated PhoP (P-PhoP) level, one of which promotes the generation of P-PhoP, while the other depresses the level of P-PhoP. The competition between the P-PhoP-promoting and the P-PhoP-depressing pathways determines the generation of the P-PhoP surge. Furthermore, besides PhoQ, PhoP is also a bifunctional modulator that contributes to the dynamic control of P-PhoP state, leading to a biphasic regulation of the surge by the gene feedback loop. In summary, the mechanisms derived from the PhoP/PhoQ system for the transcriptional surges provide a better understanding on such a sophisticated signal transduction system and aid to develop new antimicrobial strategies targeting TCSs. Availability and implementation https://github.com/jianweishuai/TCS. Supplementary information Supplementary data are available at Bioinformatics online.
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