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Crohn’s Disease–Associated Pathogenic Mutation in the Manganese Transporter ZIP8 Shifts the Ileal and Rectal Mucosal Microbiota Implicating Aberrant Bile Acid Metabolism

FGF19型 平衡 维管菌 肝肠循环 胆汁酸 胃肠病学 克罗恩病 微生物群 疾病 医学 内科学 生物 生物信息学 成纤维细胞生长因子 遗传学 细菌 链球菌 受体
作者
Kristi Briggs,Vartika Tomar,Nicholas J. Ollberding,Yael Haberman,Arno R. Bourgonje,Shixian Hu,Lara Chaaban,Laxmi Sunuwar,Rinse K. Weersma,Lee A. Denson,Joanna Melia
出处
期刊:Inflammatory Bowel Diseases [Oxford University Press]
卷期号:30 (8): 1379-1388 被引量:6
标识
DOI:10.1093/ibd/izae003
摘要

Abstract Background A pathogenic mutation in the manganese transporter ZIP8 (A391T; rs13107325) increases the risk of Crohn’s disease. ZIP8 regulates manganese homeostasis and given the shared need for metals between the host and resident microbes, there has been significant interest in alterations of the microbiome in carriers of ZIP8 A391T. Prior studies have not examined the ileal microbiome despite associations between ileal disease and ZIP8 A391T. Methods Here, we used the Pediatric Risk Stratification Study (RISK) cohort to perform a secondary analysis of 16S ribosomal RNA gene sequencing data obtained from ileal and rectal mucosa to study associations between ZIP8 A391T carrier status and microbiota composition. Results We found sequence variants mapping to Veillonella were decreased in the ileal mucosa of ZIP8 A391T carriers. Prior human studies have demonstrated the sensitivity of Veillonella to bile acid abundance. We therefore hypothesized that bile acid homeostasis is differentially regulated in carriers of ZIP8 A391T. Using a mouse model of ZIP8 A391T, we demonstrate an increase in total bile acids in the liver and stool and decreased fibroblast growth factor 15 (Fgf15) signaling, consistent with our hypothesis. We confirmed dysregulation of FGF19 in the 1000IBD cohort, finding that plasma FGF19 levels are lower in ZIP8 A391T carriers with ileocolonic Crohn’s disease. Conclusions In the search for genotype-specific therapeutic paradigms for patients with Crohn’s disease, these data suggest targeting the FGF19 pathway in ZIP8 A391T carriers. Aberrant bile acid metabolism may precede development of Crohn’s disease and prioritize study of the interactions between manganese homeostasis, bile acid metabolism and signaling, and complicated ileal Crohn’s disease.

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