Chen Yue, MacGilvary Nathan J, Tan Shumin
Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
bioRxiv. 2023 Aug 24:2023.08.22.554309. doi: 10.1101/2023.08.22.554309.
How bacterial response to environmental cues and nutritional sources may be integrated in enabling host colonization is poorly understood. Exploiting a reporter-based screen, we discovered that overexpression of (Mtb) lipid utilization regulators altered Mtb acidic pH response dampening by low environmental potassium (K). Transcriptional analyses unveiled amplification of Mtb response to acidic pH in the presence of cholesterol, a major carbon source for Mtb during infection, and vice versa. Strikingly, deletion of the putative lipid regulator resulted in loss of augmentation of (i) cholesterol response at acidic pH, and (ii) low [K] response by cholesterol, with minimal effect on Mtb response to each signal individually. Finally, the ∆ mutant was attenuated for colonization in a murine model that recapitulates lesions with lipid-rich foamy macrophages. These findings reveal critical coordination between bacterial response to environmental and nutritional cues, and establish Mce3R as a crucial integrator of this process.
目前人们对细菌如何整合对环境线索和营养来源的反应以实现宿主定殖知之甚少。通过基于报告基因的筛选,我们发现结核分枝杆菌(Mtb)脂质利用调节因子的过表达改变了Mtb在低环境钾(K)条件下酸pH反应的减弱。转录分析揭示了在感染期间Mtb的主要碳源胆固醇存在的情况下,Mtb对酸pH反应的增强,反之亦然。令人惊讶的是,假定的脂质调节因子的缺失导致(i)在酸性pH下胆固醇反应增强的丧失,以及(ii)胆固醇对低[K]反应的丧失,而对Mtb对每个信号的单独反应影响最小。最后,在一个模拟富含脂质的泡沫巨噬细胞病变的小鼠模型中,∆突变体在定殖方面减弱。这些发现揭示了细菌对环境和营养线索反应之间的关键协调,并将Mce3R确立为这一过程的关键整合者。