细胞生物学
细胞内
串扰
调节器
生物
下调和上调
细胞内寄生虫
酵母
磷酸酶
细菌
微生物学
条件基因敲除
化学
酿酒酵母
细胞适应
群体感应
激酶
基因表达调控
一氧化氮
新陈代谢
调解人
毒力
HEK 293细胞
精氨酸
RNA干扰
寄主(生物学)
作者
Li Fan,Yang Sun,Fangzhou Lou,Zilong Fang,Wen Ding,Xiangxiao Li,Yan Li,Qingqing Shen,Siyu Deng,Jihuan Liang,Fengjiao Zhang,Sibei Tang,Zhikai Wang,Xiaojie Cai,Jiajia Tong,Zhenyao Xu,Jing Zou,Qing Yang,Honglin Wang
出处
期刊:PLOS Pathogens
[Public Library of Science]
日期:2025-12-31
卷期号:21 (12): e1013304-e1013304
标识
DOI:10.1371/journal.ppat.1013304
摘要
Intracellular bacterial pathogens exhibit heterogeneous replication rates within host macrophages, but the mechanisms by which they manipulate host factors for survival remain incompletely understood. Using a fluorescence-dilution reporter system in Salmonella Typhimurium ( Salmonella )-infected macrophages, we found that Protein Phosphatase 6 (Pp6) was downregulated in macrophages harboring growing bacteria. Conditional knockout of Pp6 elevated host susceptibility to Salmonella -mediated lethality due to compromised antimicrobial defenses. MicroRNA-31 (miR-31) was identified as a negative regulator of Pp6, and its conditional ablation enhanced bacterial clearance. Yeast two-hybrid screening identified 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 1 (Pfkfb1), a metabolic regulator, as a substrate of Pp6. Pp6 deficiency resulted in significantly elevated expression of Pfkfb1, which was highly expressed in macrophages containing replicating Salmonella . Pfkfb1 deletion restricted bacterial proliferation by promoting nitric oxide (NO) production while concurrently suppressing arginase-1 (Arg-1) expression and impairing arginine metabolism in macrophages. Collectively, these results establish the Pp6-Pfkfb1 axis as a key regulator of host metabolic adaptation and intracellular bacterial survival, offering potential therapeutic targets against multidrug-resistant pathogens.
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