胆汁酸引起的结肠代谢变化会促进肠杆菌扩增,并与克罗恩病的菌群失调有关。

IF 6.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ravi Holani, Haggai Bar-Yoseph, Zakhar Krekhno, Antonio Serapio-Palacios, Kyung-Mee Moon, Richard G. Stacey, Katherine A. Donald, Wanyin Deng, Brian Bressler, Armando A. Magaña, Leonard J. Foster, Michael G. Atser, James D. Johnson, Barton Brett Finlay
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引用次数: 0

摘要

胆汁酸(BAs)影响潜在致病性共生菌的生长,包括那些来自肠杆菌科的共生菌,它们在炎症性肠病(IBD)中经常被过度代表。ba通常在回肠中被重新吸收以进行循环,并且在IBD患者(包括克罗恩病(CD)患者)的结肠腔中经常增加。在这里,我们研究了BAs对肠杆菌科肠道定植的影响。我们发现,乳糜泻患者结肠黏膜中肠杆菌科的丰度增加,同时回肠中吸收ba的转运蛋白减少。与完整回肠患者相比,接受回肠末端切除术的患者结肠中肠杆菌科定植的增加更大,这使我们假设BAs促进了肠杆菌科的肠道定植。人类结肠上皮细胞系暴露于ba可减少线粒体呼吸,增加氧气利用率,并增强几种肠杆菌科成员的上皮粘附性。在公开的人类数据集中,粘膜肠杆菌科与线粒体功能相关基因的表达呈负相关。在小鼠模型中,肠道BA利用率的增加以依赖于细菌呼吸的方式增强了大肠杆菌的定植。总之,我们的研究结果表明,BAs减少了结肠中的线粒体呼吸,导致氧气可用性增加,从而促进肠杆菌科定植。BAs作为宿主-共生相互作用的促进剂的鉴定可能与多种肠道疾病有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bile acid–induced metabolic changes in the colon promote Enterobacteriaceae expansion and associate with dysbiosis in Crohn’s disease
Bile acids (BAs) affect the growth of potentially pathogenic commensals, including those from the Enterobacteriaceae family, which are frequently overrepresented in inflammatory bowel disease (IBD). BAs are normally reabsorbed in the ileum for recycling and are often increased in the colonic lumina of patients with IBD, including those with Crohn’s disease (CD). Here, we investigated the influence of BAs on gut colonization by Enterobacteriaceae. We found increased abundance of Enterobacteriaceae in the colonic mucosae of patients with CD with a concomitant decrease in the transporters that resorb BAs in the ileum. The increase in Enterobacteriaceae colonization was greater in the colons of patients who had undergone terminal ileum resection compared with those with intact ileum, leading us to hypothesize that BAs promote intestinal colonization by Enterobacteriaceae. Exposure of human colonic epithelial cell lines to BAs reduced mitochondrial respiration, increased oxygen availability, and enhanced the epithelial adherence of several Enterobacteriaceae members. In a publicly available human dataset, mucosal Enterobacteriaceae was negatively associated with the expression of genes related to mitochondrial function. In a murine model, increased intestinal BA availability enhanced colonization by Escherichia coli in a manner that depended on bacterial respiration. Together, our findings demonstrate that BAs reduce mitochondrial respiration in the colon, leading to an increase in oxygen availability that facilitates Enterobacteriaceae colonization. This identification of BAs as facilitators of host-commensal interactions may be relevant to multiple intestinal diseases.
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来源期刊
Science Signaling
Science Signaling BIOCHEMISTRY & MOLECULAR BIOLOGY-CELL BIOLOGY
CiteScore
9.50
自引率
0.00%
发文量
148
审稿时长
3-8 weeks
期刊介绍: "Science Signaling" is a reputable, peer-reviewed journal dedicated to the exploration of cell communication mechanisms, offering a comprehensive view of the intricate processes that govern cellular regulation. This journal, published weekly online by the American Association for the Advancement of Science (AAAS), is a go-to resource for the latest research in cell signaling and its various facets. The journal's scope encompasses a broad range of topics, including the study of signaling networks, synthetic biology, systems biology, and the application of these findings in drug discovery. It also delves into the computational and modeling aspects of regulatory pathways, providing insights into how cells communicate and respond to their environment. In addition to publishing full-length articles that report on groundbreaking research, "Science Signaling" also features reviews that synthesize current knowledge in the field, focus articles that highlight specific areas of interest, and editor-written highlights that draw attention to particularly significant studies. This mix of content ensures that the journal serves as a valuable resource for both researchers and professionals looking to stay abreast of the latest advancements in cell communication science.
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