Yang Jing, Wang Min, Wang Yi, Qiang Rui, Jin Qiyuan, Zhao Chenhao, Chen Qi, Han Mingxiao, Ma Xin, Zhang Haifang
Department of Clinical Laboratory, The Second Affiliated Hospital of Soochow University, Suzhou, China.
MOE Key Laboratory of Geriatric Diseases and Immunology, Soochow University, Suzhou, China.
Virulence. 2025 Dec;16(1):2545559. doi: 10.1080/21505594.2025.2545559. Epub 2025 Aug 13.
Bacterial infections are a leading cause of global health loss. The prerequisites for bacteria to colonize and establish systemic infection in the host are environmental adaptability and the expression of virulence factors. Phosphorus constitutes the fifth most important element in terms of its cellular content, which is pivotal for DNA replication, metabolism, signal transmission, and microbial cell composition. The phosphate (Pho) regulon is a well-established unique mechanism in response to inorganic phosphate (Pi) starvation. The Pho regulon is strongly related to bacterial pathogenicity, except for the simple regulatory system for Pho balance. The PhoBR two-component regulatory system of the Pho regulon has documented the effects of affecting virulence in microbes. This review emphasizes the impact of the absence of PhoB and virulence-related gene regulation by PhoB on pathogenicity in common pathogens of , , enterica serovar , , etc. Collectively, Pho regulon is a regulatory network connecting Pho homeostasis with bacterial virulence. This study may offer valuable information for understanding the regulation of bacterial virulence by the Pho regulon, providing novel insights for the development of antimicrobial strategies.
细菌感染是全球健康损失的主要原因。细菌在宿主体内定殖并建立全身感染的先决条件是环境适应性和毒力因子的表达。就细胞含量而言,磷是第五重要的元素,对DNA复制、新陈代谢、信号传递和微生物细胞组成至关重要。磷酸(Pho)调节子是一种成熟的应对无机磷酸盐(Pi)饥饿的独特机制。除了简单的Pho平衡调节系统外,Pho调节子与细菌致病性密切相关。Pho调节子的PhoBR双组分调节系统已证明其对微生物毒力的影响。本综述强调了PhoB缺失以及PhoB对毒力相关基因的调控对伤寒沙门氏菌等常见病原体致病性的影响。总的来说,Pho调节子是一个将Pho稳态与细菌毒力联系起来的调控网络。本研究可能为理解Pho调节子对细菌毒力的调控提供有价值的信息,为抗菌策略的开发提供新的见解。