| Literature DB >> 33483420 |
Yalong Wang1,2, Kaixin He1,2, Baifa Sheng3,4, Xuqiu Lei4, Wanyin Tao2, Xiaoliang Zhu5,6, Zheng Wei4, Rongjie Fu5,6, Anlei Wang2, Shengdan Bai2, Zhao Zhang2,7, Na Hong1, Chao Ye1, Ye Tian7, Jun Wang8,9, Mingsong Li10, Kaiguang Zhang1, Lin Li5, Hua Yang11, Hua-Bing Li12,13, Richard A Flavell14,15, Shu Zhu16,2,17,18.
Abstract
RNA helicases play roles in various essential biological processes such as RNA splicing and editing. Recent in vitro studies show that RNA helicases are involved in immune responses toward viruses, serving as viral RNA sensors or immune signaling adaptors. However, there is still a lack of in vivo data to support the tissue- or cell-specific function of RNA helicases owing to the lethality of mice with complete knockout of RNA helicases; further, there is a lack of evidence about the antibacterial role of helicases. Here, we investigated the in vivo role of Dhx15 in intestinal antibacterial responses by generating mice that were intestinal epithelial cell (IEC)-specific deficient for Dhx15 (Dhx15 f/f Villin1-cre, Dhx15ΔIEC). These mice are susceptible to infection with enteric bacteria Citrobacter rodentium (C. rod), owing to impaired α-defensin production by Paneth cells. Moreover, mice with Paneth cell-specific depletion of Dhx15 (Dhx15 f/f Defensinα6-cre, Dhx15ΔPaneth) are more susceptible to DSS (dextran sodium sulfate)-induced colitis, which phenocopy Dhx15ΔIEC mice, due to the dysbiosis of the intestinal microbiota. In humans, reduced protein levels of Dhx15 are found in ulcerative colitis (UC) patients. Taken together, our findings identify a key regulator of Wnt-induced α-defensins in Paneth cells and offer insights into its role in the antimicrobial response as well as intestinal inflammation.Entities:
Keywords: DEAD-box helicase 15 (Dhx15); Paneth cells; alpha-defensins; inflammatory bowel diseases (IBD); intestinal inflammation
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Year: 2021 PMID: 33483420 PMCID: PMC7848544 DOI: 10.1073/pnas.2017432118
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 12.779