Urobiota analysis and genome-wide association study in pediatric recurrent urinary tract infections and vesicoureteral reflux

作者
Miguel Verbitsky,P.K. Khosla,Daniel L. Bivona,Atlas Khan,Yask Gupta,Heekuk Park,Tian Shen,Aryan S. Ghotra,Katherine Xu,Iman Ghavami,Priya Krithivasan,Jeremiah Martino,Tanya Sezin,Tze Yin Lim,Victoria Kolupaeva,Nita A. Limdi,Yuan Luo,Håkon Håkonarson,Simone Sanna‐Cherchi,Krzysztof Kiryluk
出处
期刊:JCI insight [American Society for Clinical Investigation]
标识
DOI:10.1172/jci.insight.199689
摘要

Urinary tract infections (UTIs) are the most common severe bacterial infections in young children, often associated with vesicoureteral reflux (VUR). To explore host genetic-microbiota interactions and their clinical implications, we analyzed the urinary microbiota (urobiota) and conducted genome-wide association studies (GWAS) for bacterial abundance traits in pediatric UTI and VUR patients from the RIVUR and CUTIE cohorts. We identified four urobiota community types based on relative abundance, characterized by the genera Enterococcus, Prevotella, Pseudomonas, and Escherichia/Shigella, and their associations with VUR, age, and toilet training. Children with VUR exhibited decreased microbial diversity and increased abundance of genera that included opportunistic pathogens, suggesting a disrupted urobiota. We detected genome-wide significant genetic associations with urinary bacterial relative abundances, in or near candidate genes including CXCL12, ABCC1, and ROBO1, which are implicated in urinary tract development and response to infection. We showed that Cxcl12 is induced 12 hours after uropathogenic bacterial infection in mouse bladder. The association with CXCL12 suggests a genetic link between UTI, VUR and cardiovascular phenotypes later in life. These findings provide the first characterization of host genetic influences on the pediatric urobiota in UTI and VUR, offering insights into the interplay between disease, host genetics and the urobiota composition.

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