MedicineBiology

Tomonari Hamaguchi, Noriaki Gibo, Misuzu Ohara, Mikako Ito, Tomoyuki Ogura, Jun-Ichi Takeda, Hiroshi Nishiwaki, Fei Zhao, Ryo Kinoshita-Daitoku, Masashi Hattori, Koji Nonogaki, T. Maeda, Kenichi Kashihara, Yoshio Tsuboi, Masaaki Hirayama, Mitsuhiro Fujishiro, Hiroki Kawashima, Kinji Ohno

2026.2.18Gut Microbes

DOI: 10.1080/19490976.2025.2596809

tlooto Summary

Bacterial constipation is proposed, in which cooperative degradation of colonic mucins by sulfatases and glycosylases by two commensal bacteria reduces lubrication and induces fecal dehydration, leading to the development of constipation.

Abstract

The contribution of gut microbes to constipation remains mechanistically underexplored, despite constipation being one of the most prevalent gastrointestinal disorders. Here, we identify cooperative induction of constipation by two mucin-degrading gut commensals: Akkermansia muciniphila and Bacteroides thetaiotaomicron. In constipated patients with Parkinson's disease (PD) and chronic idiopathic constipation (CIC), we observed that A. muciniphila and B. thetaiotaomicron were increased. Gnotobiotic mice colonized with either bacterium exhibited no constipation, whereas mice co-colonized with both bacteria developed constipation. Fecal mucins but not gastric mucins carry terminal sulfates. As fecal transcriptome of gnotobiotic mice suggested a sulfatase-dependent mechanism, we generated an anaerobic sulfatase-maturating enzyme (anSME)-deficient B. thetaiotaomicron strain that cannot catabolize the terminal sulfates of mucins. In the absence of anSME, constipation was ameliorated in co-colonized gnotobiotic mice. The synergic effect of the two bacteria is in accordance with our observation that A. muciniphila alone and constipation are not correlated in humans. As a bunch of intestinal bacteria other than B. thetaiotaomicron also catabolize mucin sulfates, they may substitute for B. thetaiotaomicron in patients with constipation. We propose bacterial constipation, in which cooperative degradation of colonic mucins by sulfatases and glycosylases by two commensal bacteria reduces lubrication and induces fecal dehydration, leading to the development of constipation. Targeting microbial sulfatase activity may be a promising therapeutic approach for patients with bacterial constipation.

Citation format

HAMAGUCHI, Tomonari, et al. Bacterial constipation: Mucin-degrading intestinal commensal bacteria cause constipation. Gut Microbes, 2026, 18(1): 2596809.