Josephs-Spaulding Jonathan, Rettig Hannah Clara, Zimmermann Johannes, Chkonia Mariam, Mischnik Alexander, Franzenburg Sören, Graspeuntner Simon, Rupp Jan, Kaleta Christoph
Research Group Medical Systems Biology, University Hospital Schleswig-Holstein Campus Kiel, 24105 Kiel University, Kiel, Schleswig-Holstein, Germany.
Institute of Medical Microbiology, University of Lübeck, 23538, Lübeck, Germany.
NPJ Biofilms Microbiomes. 2025 Sep 9;11(1):183. doi: 10.1038/s41522-025-00823-6.
Urinary tract infections (UTIs) are among the most common bacterial infections and are increasingly complicated by multidrug resistance (MDR). While Escherichia coli is frequently implicated, the contribution of broader microbial communities remains less understood. Here, we integrate metatranscriptomic sequencing with genome-scale metabolic modeling to characterize active metabolic functions of patient-specific urinary microbiomes during acute UTI. We analyzed urine samples from 19 female patients with confirmed uropathogenic E. coli (UPEC) infections, reconstructing personalized community models constrained by gene expression and simulated in a virtual urine environment. This systems biology approach revealed marked inter-patient variability in microbial composition, transcriptional activity, and metabolic behavior. We identified distinct virulence strategies, metabolic cross-feeding, and a modulatory role for Lactobacillus species. Comparisons between transcript-constrained and unconstrained models showed that integrating gene expression narrows flux variability and enhances biological relevance. These findings highlight the metabolic heterogeneity of UTI-associated microbiota and point to microbiome-informed diagnostic and therapeutic strategies for managing MDR infections.
尿路感染(UTIs)是最常见的细菌感染之一,并且越来越多地因多重耐药性(MDR)而变得复杂。虽然大肠杆菌经常被牵连其中,但更广泛的微生物群落的作用仍不太清楚。在这里,我们将宏转录组测序与基因组规模的代谢建模相结合,以表征急性尿路感染期间患者特异性泌尿微生物群的活跃代谢功能。我们分析了19名确诊为尿路致病性大肠杆菌(UPEC)感染的女性患者的尿液样本,重建了受基因表达约束的个性化群落模型,并在虚拟尿液环境中进行模拟。这种系统生物学方法揭示了患者之间在微生物组成、转录活性和代谢行为方面的显著差异。我们确定了不同的毒力策略、代谢交叉喂养以及乳酸杆菌属的调节作用。转录约束模型和无约束模型之间的比较表明,整合基因表达可缩小通量变异性并增强生物学相关性。这些发现突出了与UTI相关的微生物群的代谢异质性,并指出了基于微生物组的诊断和治疗策略,以管理多重耐药感染。