Multi-omics analyses of the ulcerative colitis gut microbiome link Bacteroides vulgatus proteases with disease severity

蛋白酵素 失调 脆弱类杆菌 拟杆菌 生物 溃疡性结肠炎 微生物群 炎症性肠病 蛋白酶 结肠炎 免疫学 疾病 肠道菌群 基因组 微生物学 蛋白质组 医学 生物信息学 细菌 抗生素 内科学 遗传学 基因 生物化学
作者
Robert H. Mills,Parambir S. Dulai,Yoshiki Vázquez‐Baeza,Consuelo Sauceda,Noëmie Daniel,Romana R. Gerner,Lakshmi E. Batachari,Mario Malfavon,Qiyun Zhu,Kelly C. Weldon,Greg Humphrey,Marvic Carrillo-Terrazas,Lindsay DeRight Goldasich,MacKenzie Bryant,Manuela Raffatellu,Robert A. Quinn,Andrew T. Gewirtz,Benoît Chassaing,Hiutung Chu,William J. Sandborn
出处
期刊:Nature microbiology [Nature Portfolio]
卷期号:7 (2): 262-276 被引量:215
标识
DOI:10.1038/s41564-021-01050-3
摘要

Ulcerative colitis (UC) is driven by disruptions in host-microbiota homoeostasis, but current treatments exclusively target host inflammatory pathways. To understand how host-microbiota interactions become disrupted in UC, we collected and analysed six faecal- or serum-based omic datasets (metaproteomic, metabolomic, metagenomic, metapeptidomic and amplicon sequencing profiles of faecal samples and proteomic profiles of serum samples) from 40 UC patients at a single inflammatory bowel disease centre, as well as various clinical, endoscopic and histologic measures of disease activity. A validation cohort of 210 samples (73 UC, 117 Crohn's disease, 20 healthy controls) was collected and analysed separately and independently. Data integration across both cohorts showed that a subset of the clinically active UC patients had an overabundance of proteases that originated from the bacterium Bacteroides vulgatus. To test whether B. vulgatus proteases contribute to UC disease activity, we first profiled B. vulgatus proteases found in patients and bacterial cultures. Use of a broad-spectrum protease inhibitor improved B. vulgatus-induced barrier dysfunction in vitro, and prevented colitis in B. vulgatus monocolonized, IL10-deficient mice. Furthermore, transplantation of faeces from UC patients with a high abundance of B. vulgatus proteases into germfree mice induced colitis dependent on protease activity. These results, stemming from a multi-omics approach, improve understanding of functional microbiota alterations that drive UC and provide a resource for identifying other pathways that could be inhibited as a strategy to treat this disease.
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