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Merck
CN
  • A gnotobiotic mouse model demonstrates that dietary fiber protects against colorectal tumorigenesis in a microbiota- and butyrate-dependent manner.

A gnotobiotic mouse model demonstrates that dietary fiber protects against colorectal tumorigenesis in a microbiota- and butyrate-dependent manner.

Cancer discovery (2014-10-01)
Dallas R Donohoe, Darcy Holley, Leonard B Collins, Stephanie A Montgomery, Alan C Whitmore, Andrew Hillhouse, Kaitlin P Curry, Sarah W Renner, Alicia Greenwalt, Elizabeth P Ryan, Virginia Godfrey, Mark T Heise, Deborah S Threadgill, Anna Han, James A Swenberg, David W Threadgill, Scott J Bultman
摘要

Whether dietary fiber protects against colorectal cancer is controversial because of conflicting results from human epidemiologic studies. However, these studies and mouse models of colorectal cancer have not controlled the composition of gut microbiota, which ferment fiber into short-chain fatty acids such as butyrate. Butyrate is noteworthy because it has energetic and epigenetic functions in colonocytes and tumor-suppressive properties in colorectal cancer cell lines. We used gnotobiotic mouse models colonized with wild-type or mutant strains of a butyrate-producing bacterium to demonstrate that fiber does have a potent tumor-suppressive effect but in a microbiota- and butyrate-dependent manner. Furthermore, due to the Warburg effect, butyrate was metabolized less in tumors where it accumulated and functioned as a histone deacetylase (HDAC) inhibitor to stimulate histone acetylation and affect apoptosis and cell proliferation. To support the relevance of this mechanism in human cancer, we demonstrate that butyrate and histone-acetylation levels are elevated in colorectal adenocarcinomas compared with normal colonic tissues. These results, which link diet and microbiota to a tumor-suppressive metabolite, provide insight into conflicting epidemiologic findings and suggest that probiotic/prebiotic strategies can modulate an endogenous HDAC inhibitor for anticancer chemoprevention without the adverse effects associated with synthetic HDAC inhibitors used in chemotherapy.

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Sigma-Aldrich
偶氮甲烷, 13.4 M, ≥98%
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乙酰化微管蛋白单克隆抗体 小鼠抗, clone 6-11B-1, ascites fluid
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抗乙酰组蛋白H3抗体, from rabbit
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NuCLEAR提取试剂盒, For mammalian tissue or cultured cells
Sigma-Aldrich
1,2-苯并异噁唑, ≥95.0%
Sigma-Aldrich
Anti-Histone H3 Antibody, CT, pan, clone A3S, rabbit monoclonal, clone A3S, Upstate®, from rabbit