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结核分枝杆菌双组分系统及其在新型疫苗和药物中的意义。

Mycobacterium tuberculosis two-component systems and implications in novel vaccines and drugs.

作者信息

Zhou PeiFu, Long QuanXin, Zhou YeXin, Wang HongHai, Xie JianPing

机构信息

Institute of Modern Biopharmaceuticals, State Key Laboratory Breeding Base of Eco-Enviroment and Bio-Resource of the Three Gorges Area, School of Life Sciences, Southwest University, Chongqing 400715, China.

出版信息

Crit Rev Eukaryot Gene Expr. 2012;22(1):37-52. doi: 10.1615/critreveukargeneexpr.v22.i1.30.

Abstract

Communication is vital for nearly all organisms to survive and thrive. For some particularly successful intracellular pathogens, a robust and precise signal transduction system is imperative for handling the complex, volatile, and harsh niche. The communication network of the etiology of tuberculosis, Mycobacterium tuberculosis (M.tb), namely two-component system (TCS), the eukaryotic-like Ser/Thr protein kinases(STPKs) system, the protein tyrosine kinase(PTK) system and the extracytoplasmic function σ(ECF-σ) system, determine how the pathogen responds to environmental fluctuations. At least 12 pair TCSs and four orphan proteins (three response regulators, Rv2884, Rv0260c, Rv0818, and one putative sensory transduction protein, Rv3143) can be found in the M.tb H37Rv genome. They regulate various aspects of M.tb, including virulence, dormancy, persistence, and drug resistance. This review focuses on the physiological roles of TCSs and the network of M.tb TCSs from a systems biology perspective. The implications of TCSs for better vaccine and new drug targets against tuberculosis are also examined.

摘要

通讯对于几乎所有生物体的生存和繁衍都至关重要。对于一些特别成功的细胞内病原体而言,一个强大而精确的信号转导系统对于应对复杂、多变且恶劣的生态位必不可少。结核病的病原体结核分枝杆菌(M.tb)的通讯网络,即双组分系统(TCS)、类真核丝氨酸/苏氨酸蛋白激酶(STPKs)系统、蛋白酪氨酸激酶(PTK)系统和胞外功能σ(ECF-σ)系统,决定了该病原体如何应对环境波动。在M.tb H37Rv基因组中可发现至少12对TCS以及四种孤儿蛋白(三种应答调节蛋白,Rv2884、Rv0260c、Rv0818,以及一种假定的传感转导蛋白,Rv3143)。它们调节M.tb的各个方面,包括毒力、休眠、持续性和耐药性。本综述从系统生物学角度聚焦于TCS的生理作用以及M.tb TCS网络。还探讨了TCS对于更好的结核病疫苗和新药物靶点的意义。

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