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Murine Colitis Modeling using Dextran Sulfate Sodium DSS
Published on: January 19, 2010
FAM96A Protects Mice From Dextran Sulfate Sodium (DSS)-Induced Colitis by Preventing Microbial Dysbiosis
Ang Yin1,2, Yang Luo1,2, Wei Chen1,2
1Department of Immunology, Center for Human Disease Genomics, Health Science Center, School of Basic Medical Sciences, Peking University, Beijing, China.
Abstract:
Family with sequence similarity 96 member A (FAM96A) is an evolutionarily conserved intracellular protein that is involved in the maturation of the Fe/S protein, iron regulatory protein 1 (IRP1), and the mitochondria-related apoptosis of gastrointestinal stromal tumor cells. In this study, we used a mouse model of chemically induced colitis to investigate the physiological role of FAM96A in intestinal homeostasis and inflammation. At baseline, colons from Fam96a-/- mice exhibited microbial dysbiosis, dysregulated epithelial cell turnover, an increased number of goblet cells, and disordered tight junctions with functional deficits affecting intestinal permeability. After cohousing, the differences between wild-type and Fam96a-/- colons were abrogated, suggesting that FAM96A affects colonic epithelial cells in a microbiota-dependent manner. Fam96a deficiency in mice resulted in increased susceptibility to dextran sulfate sodium (DSS)-induced colitis. Importantly, the colitogenic activity of Fam96a-/- intestinal microbiota was transferable to wild-type littermate mice via fecal microbial transplantation (FMT), leading to exacerbation of DSS-induced colitis. Taken together, our data indicate that FAM96A helps to maintain colonic homeostasis and protect against DSS-induced colitis by preventing gut microbial dysbiosis. This study used gene knockout animals to help to understand the in vivo effects of the Fam96a gene for the first time and provides new evidence regarding host-microbiota interactions.
Insights
Family with sequence similarity 96 member A (FAM96A) protein is crucial for maintaining gut homeostasis. FAM96A deficiency causes microbial dysbiosis, increasing susceptibility to colitis, highlighting its role in host-microbiota interactions.
Area of Science:
- Gastroenterology
- Microbiology
- Immunology
Background:
- Family with sequence similarity 96 member A (FAM96A) is an evolutionarily conserved protein involved in Fe/S protein maturation and apoptosis.
- Its role in intestinal homeostasis and inflammation remains largely unexplored.
Purpose of the Study:
- To investigate the physiological role of FAM96A in intestinal homeostasis and inflammation using a mouse model of chemically induced colitis.
Main Methods:
- Utilized gene knockout mice (Fam96a-/-) and a dextran sulfate sodium (DSS)-induced colitis model.
- Performed cohousing experiments and fecal microbial transplantation (FMT) to assess microbiota-dependent effects.
Main Results:
- Fam96a-/- mice exhibited baseline colonic microbial dysbiosis, altered epithelial cell turnover, and increased intestinal permeability.
- Fam96a deficiency led to increased susceptibility to DSS-induced colitis.
- Colitogenic microbiota from Fam96a-/- mice was transferable via FMT, exacerbating colitis in wild-type mice.
Conclusions:
- FAM96A plays a vital role in maintaining colonic homeostasis by preventing gut microbial dysbiosis.
- FAM96A protects against DSS-induced colitis, underscoring the importance of host-microbiota interactions in intestinal health.

