4.7 Article

MicroRNA-146a suppresses IL-17-mediated skin inflammation and is genetically associated with psoriasis

期刊

JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY
卷 139, 期 2, 页码 550-561

出版社

MOSBY-ELSEVIER
DOI: 10.1016/j.jaci.2016.07.025

关键词

Psoriasis; microRNA; miR-146a; single nucleotide polymorphisms; skin inflammation; IL-17; keratinocyte; mouse model

资金

  1. Swedish Medical Research Council (Vetenskapsradet) [2012-1591, 2013-03085, 2015-02218, 2015-02554, 2015-02844]
  2. Swedish Psoriasis Association (Psoriasisforbundet)
  3. Welander and Finsen Foundations (Hudfonden) [2207, 2228, 2408]
  4. Swedish Cancer Foundation [CAN 2015/694]
  5. Ake Wibergs Foundation
  6. Karolinska Institutet
  7. Magnus Bergwall Foundation [2014-00083]
  8. Ragnar Soderbergs Foundation [M31/15]
  9. KI/Stockholm County Council
  10. Royal Physiographic Society in Lund [34578]
  11. Stockholm County Council
  12. Swedish Research Council [2015-02844, 2013-03085, 2015-02218, 2015-02554] Funding Source: Swedish Research Council
  13. Vinnova [2015-02218] Funding Source: Vinnova

向作者/读者索取更多资源

Background: Psoriasis is an immune-mediated inflammatory skin disease with a strong genetic background in which activation of IL-17 signaling is central in the pathogenesis. Little has been known about the role of noncoding RNAs, including microRNAs (miRNAs), in predisposition to the disease. Objective: We sought to investigate the genetic association of single nucleotide polymorphisms in microRNA-146a (miR-146a) to psoriasis and to explore its function in the initiation and resolution of the disease. Methods: Analysis of the genetic association of miR-146a rs2910164 and psoriasis was carried out on 1546 patients with psoriasis and 1526 control subjects. The role of miR-146a in patients with psoriasis was assessed by using miR-146a(-/-) mice in conjunction with the imiquimod-inducedmousemodel of psoriasis. The severity of psoriasis-like skin inflammation was evaluated at morphologic, histologic, and molecular levels. miR-146a was ectopically overexpressed and inhibited in keratinocytes treated with IL-17. Synthetic miR-146a was injected intradermally into mice. Results: Here we report protective association of a functional polymorphism in the miR-146a precursor (rs2910164). Genetic deficiency in miR-146a leads to earlier onset and exacerbated pathology of skin inflammation, with increased expression of IL-17-induced keratinocyte-derived inflammatory mediators, epidermal hyperproliferation, and increased neutrophil infiltration. Moreover, miR-146a-deficient mice do not resolve inflammation after discontinuation of imiquimod challenge. The overexpression of miR-146a suppressed, whereas its inhibition enhanced, IL-17-driven inflammation in keratinocytes. Functionally, miR-146a impairs the neutrophil chemoattractant capacity of keratinocytes. Finally, delivery of miR-146a mimics into the skin leads to amelioration of psoriasiform skin inflammation, decreased epidermal proliferation, and neutrophil infiltration. Conclusions: Our results define a crucial role for miR-146a in modulating IL-17-driven inflammation in the skin.

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