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FAM3D is essential for colon homeostasis and host defense against inflammation associated carcinogenesis

Authors :
Qingqing Li
Vishal Thovarai
Ji Ming Wang
Shaoping She
Xiu-Wu Bian
Wanghua Gong
Ying Wang
Weiwei Liang
X. Peng
Wei Kong
Shiyang Huang
Ping Lv
Teizo Yoshimura
Wuxing Yuan
Keqiang Chen
Jianzhong Xi
Quansheng Song
Giorgio Trinchieri
Jiaqiang Huang
Xiao-Hong Yao
Shuye Lin
Pingzhang Wang
Colm O'hUigin
Source :
Nature Communications, Vol 11, Iss 1, Pp 1-16 (2020), Nature Communications
Publication Year :
2020
Publisher :
Nature Portfolio, 2020.

Abstract

The physiological homeostasis of gut mucosal barrier is maintained by both genetic and environmental factors and its impairment leads to pathogenesis such as inflammatory bowel disease. A cytokine like molecule, FAM3D (mouse Fam3D), is highly expressed in mouse gastrointestinal tract. Here, we demonstrate that deficiency in Fam3D is associated with impaired integrity of colonic mucosa, increased epithelial hyper-proliferation, reduced anti-microbial peptide production and increased sensitivity to chemically induced colitis associated with high incidence of cancer. Pretreatment of Fam3D−/− mice with antibiotics significantly reduces the severity of chemically induced colitis and wild type (WT) mice co-housed with Fam3D−/− mice phenocopy Fam3D-deficiency showing increased sensitivity to colitis and skewed composition of fecal microbiota. An initial equilibrium of microbiota in cohoused WT and Fam3D−/− mice is followed by an increasing divergence of the bacterial composition after separation. These results demonstrate the essential role of Fam3D in colon homeostasis, protection against inflammation associated cancer and normal microbiota composition.<br />The cytokine like protein FAM3D (Fam3D in mice) is highly expressed in the digestive tract with unknown role in colon pathophysiology. Here, by using gene deficient mice, the authors show that Fam3D is critically involved in colon homeostasis, host defense against colitis-associated carcinogenesis, and the balance of microbiota.

Details

Language :
English
ISSN :
20411723
Volume :
11
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....f306e6d0d3d05334ccd0be4bc1a5342d