Mechanism underlying the suppressor activity of retinoic acid on IL4-induced IgE synthesis and its physiological implication

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초록

The present study extends an earlier report that retinoic acid (RA) down-regulates IgE Ab synthesis in vitro. Here, we show the suppressive activity of RA on IgE production in vivo and its underlying mechanisms. We found that RA down-regulated IgE class switching recombination (CSR) mainly through RA receptor alpha (RAR alpha). Additionally, RA inhibited histone acetylation of germ-line epsilon (GL epsilon) promoter, leading to suppression of IgE CSR. Consistently, serum IgE levels were substantially elevated in vitamin A-deficient (VAD) mice and this was more dramatic in VAD-lecithin: retinol acyltransferase deficient (LRAT(-/-)) mice. Further, serum mouse mast cell protease-1 (mMCP-1) level was elevated while frequency of intestinal regulatory T cells (Tregs) were diminished in VAD LRAT(-/-) mice, reflecting that deprivation of RA leads to allergic immune response. Taken together, our results reveal that RA has an IgE-repressive activity in vivo, which may ameliorate IgE-mediated allergic disease.

키워드

CSRIgEFood allergyRetinoic acidRAR alphaVitamin A deficient miceCLASS SWITCH RECOMBINATIONREGULATORY T-CELLSDIFFERENTIATIONGENERATIONINDUCTIONGROWTHAID
제목
Mechanism underlying the suppressor activity of retinoic acid on IL4-induced IgE synthesis and its physiological implication
저자
Seo, Goo-YoungLee, Jeong-MinJang, Young-SaengKang, Seung GooYoon, Sung-ilKo, Hyun-JeongLee, Geun-ShikPark, Seok-RaeNagler, Cathryn R.Kim, Pyeung-Hyeun
DOI
10.1016/j.cellimm.2017.10.001
발행일
2017-12
유형
Article
저널명
Cellular Immunology
322
페이지
49 ~ 55