Gut Microbe-Targeted Choline Trimethylamine Lyase Inhibition Improves Obesity Via Rewiring of Host Circadian Rhythms

Author:

Schugar Rebecca C.,Gliniak Christy M.,Helsley Robert N.ORCID,Brown Amanda L.ORCID,Burrows Amy,Finney Chelsea,Fung Kevin K.,Allen Frederick M.,Ferguson Daniel,Gromovsky Anthony D.,Neumann Chase,McMillan Amy,Buffa Jennifer A.,Anderson James T.,Mehrabian Margarete,Goudzari Maryam,Willard Belinda,Mak Tytus D.,Armstrong Andrew R.,Swanson Garth,Keshavarzian AliORCID,Garcia-Garcia Jose Carlos,Wang Zeneng,Lusis Aldons J.,Hazen Stanley L.,Brown J. Mark

Abstract

AbstractObesity has repeatedly been linked to reorganization of the gut microbiome, yet to this point obesity therapeutics have been targeted exclusively toward the human host. Here we show that gut microbe-targeted inhibition of the trimethylamine N-oxide (TMAO) pathway protects mice against the metabolic disturbances associated with diet-induced obesity (DIO) or leptin deficiency (ob/ob). Small molecule inhibition of the gut microbial enzyme choline TMA-lyase (CutC) does not reduce food intake, but is instead associated with beneficial remodeling of the gut microbiome, improvement in glucose tolerance, and enhanced energy expenditure. We also show that CutC inhibition is associated with reorganization of host circadian control of both phosphatidylcholine and energy metabolism. This study underscores the relationship between microbe and host metabolism, and provides evidence that gut microbe-derived trimethylamine (TMA) is a key regulator of the host circadian clock. This work also demonstrates that gut microbe-targeted enzyme inhibitors have untapped potential as anti-obesity therapeutics.

Publisher

Cold Spring Harbor Laboratory

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