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Cancer Research 69, 2826, April 1, 2009. Published Online First March 10, 2009;
doi: 10.1158/0008-5472.CAN-08-4466
© 2009 American Association for Cancer Research

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Cell, Tumor, and Stem Cell Biology

GPR109A Is a G-protein–Coupled Receptor for the Bacterial Fermentation Product Butyrate and Functions as a Tumor Suppressor in Colon

Muthusamy Thangaraju1, Gail A. Cresci1,2, Kebin Liu1, Sudha Ananth1, Jaya P. Gnanaprakasam1, Darren D. Browning1, John D. Mellinger2, Sylvia B. Smith3, Gregory J. Digby4, Nevin A. Lambert4, Puttur D. Prasad1 and Vadivel Ganapathy1

Departments of 1 Biochemistry and Molecular Biology, 2 Surgery, 3 Cellular Biology and Anatomy, and 4 Pharmacology and Toxicology, Medical College of Georgia, Augusta, Georgia

Requests for reprints: Vadivel Ganapathy, Department of Biochemistry and Molecular Biology, Medical College of Georgia, Augusta, GA 30912. Phone: 706-721-7652; Fax: 706-721-9947; E-mail: vganapat{at}mcg.edu.

Key Words: Butyrate • G-protein–coupled receptor • Tumor suppressor

Short-chain fatty acids, generated in colon by bacterial fermentation of dietary fiber, protect against colorectal cancer and inflammatory bowel disease. Among these bacterial metabolites, butyrate is biologically most relevant. GPR109A is a G-protein–coupled receptor for nicotinate but recognizes butyrate with low affinity. Millimolar concentrations of butyrate are needed to activate the receptor. Although concentrations of butyrate in colonic lumen are sufficient to activate the receptor maximally, there have been no reports on the expression/function of GPR109A in this tissue. Here we show that GPR109A is expressed in the lumen-facing apical membrane of colonic and intestinal epithelial cells and that the receptor recognizes butyrate as a ligand. The expression of GPR109A is silenced in colon cancer in humans, in a mouse model of intestinal/colon cancer, and in colon cancer cell lines. The tumor-associated silencing of GPR109A involves DNA methylation directly or indirectly. Reexpression of GPR109A in colon cancer cells induces apoptosis, but only in the presence of its ligands butyrate and nicotinate. Butyrate is an inhibitor of histone deacetylases, but apoptosis induced by activation of GPR109A with its ligands in colon cancer cells does not involve inhibition of histone deacetylation. The primary changes in this apoptotic process include down-regulation of Bcl-2, Bcl-xL, and cyclin D1 and up-regulation of death receptor pathway. In addition, GPR109A/butyrate suppresses nuclear factor-{kappa}B activation in normal and cancer colon cell lines as well as in normal mouse colon. These studies show that GPR109A mediates the tumor-suppressive effects of the bacterial fermentation product butyrate in colon. [Cancer Res 2009;69(7):2826–32]







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Copyright © 2009 by the American Association for Cancer Research.