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Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway

Expulsion of parasitic gastrointestinal nematodes requires diverse effector mechanisms coordinated by a Th2-type response. The evolutionarily conserved JmjC protein; Myc Induced Nuclear Antigen (Mina) has been shown to repress IL4, a key Th2 cytokine, suggesting Mina may negatively regulate nematode...

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Autores principales: Pillai, Meenu R., Mihi, Belgacem, Ishiwata, Kenji, Nakamura, Kiminori, Sakuragi, Naoya, Finkelstein, David B., McGargill, Maureen A., Nakayama, Toshinori, Ayabe, Tokiyoshi, Coleman, Mathew L., Bix, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6391002/
https://www.ncbi.nlm.nih.gov/pubmed/30807587
http://dx.doi.org/10.1371/journal.pone.0211244
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author Pillai, Meenu R.
Mihi, Belgacem
Ishiwata, Kenji
Nakamura, Kiminori
Sakuragi, Naoya
Finkelstein, David B.
McGargill, Maureen A.
Nakayama, Toshinori
Ayabe, Tokiyoshi
Coleman, Mathew L.
Bix, Mark
author_facet Pillai, Meenu R.
Mihi, Belgacem
Ishiwata, Kenji
Nakamura, Kiminori
Sakuragi, Naoya
Finkelstein, David B.
McGargill, Maureen A.
Nakayama, Toshinori
Ayabe, Tokiyoshi
Coleman, Mathew L.
Bix, Mark
author_sort Pillai, Meenu R.
collection PubMed
description Expulsion of parasitic gastrointestinal nematodes requires diverse effector mechanisms coordinated by a Th2-type response. The evolutionarily conserved JmjC protein; Myc Induced Nuclear Antigen (Mina) has been shown to repress IL4, a key Th2 cytokine, suggesting Mina may negatively regulate nematode expulsion. Here we report that expulsion of the parasitic nematode Trichuris muris was indeed accelerated in Mina deficient mice. Unexpectedly, this was associated not with an elevated Th2- but rather an impaired Th1-type response. Further reciprocal bone marrow chimera and conditional KO experiments demonstrated that retarded parasite expulsion and a normal Th1-type response both required Mina in intestinal epithelial cells (IECs). Transcriptional profiling experiments in IECs revealed anti-microbial α-defensin peptides to be the major target of Mina-dependent retention of worms in infected mice. In vitro exposure to recombinant α-defensin peptides caused cytotoxic damage to whipworms. These results identify a latent IEC-intrinsic anthelmintic pathway actively constrained by Mina and point to α-defensins as important effectors that together with Mina may be attractive therapeutic targets for the control of nematode infection.
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spelling pubmed-63910022019-03-08 Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway Pillai, Meenu R. Mihi, Belgacem Ishiwata, Kenji Nakamura, Kiminori Sakuragi, Naoya Finkelstein, David B. McGargill, Maureen A. Nakayama, Toshinori Ayabe, Tokiyoshi Coleman, Mathew L. Bix, Mark PLoS One Research Article Expulsion of parasitic gastrointestinal nematodes requires diverse effector mechanisms coordinated by a Th2-type response. The evolutionarily conserved JmjC protein; Myc Induced Nuclear Antigen (Mina) has been shown to repress IL4, a key Th2 cytokine, suggesting Mina may negatively regulate nematode expulsion. Here we report that expulsion of the parasitic nematode Trichuris muris was indeed accelerated in Mina deficient mice. Unexpectedly, this was associated not with an elevated Th2- but rather an impaired Th1-type response. Further reciprocal bone marrow chimera and conditional KO experiments demonstrated that retarded parasite expulsion and a normal Th1-type response both required Mina in intestinal epithelial cells (IECs). Transcriptional profiling experiments in IECs revealed anti-microbial α-defensin peptides to be the major target of Mina-dependent retention of worms in infected mice. In vitro exposure to recombinant α-defensin peptides caused cytotoxic damage to whipworms. These results identify a latent IEC-intrinsic anthelmintic pathway actively constrained by Mina and point to α-defensins as important effectors that together with Mina may be attractive therapeutic targets for the control of nematode infection. Public Library of Science 2019-02-26 /pmc/articles/PMC6391002/ /pubmed/30807587 http://dx.doi.org/10.1371/journal.pone.0211244 Text en © 2019 Pillai et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Pillai, Meenu R.
Mihi, Belgacem
Ishiwata, Kenji
Nakamura, Kiminori
Sakuragi, Naoya
Finkelstein, David B.
McGargill, Maureen A.
Nakayama, Toshinori
Ayabe, Tokiyoshi
Coleman, Mathew L.
Bix, Mark
Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
title Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
title_full Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
title_fullStr Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
title_full_unstemmed Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
title_short Myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
title_sort myc-induced nuclear antigen constrains a latent intestinal epithelial cell-intrinsic anthelmintic pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6391002/
https://www.ncbi.nlm.nih.gov/pubmed/30807587
http://dx.doi.org/10.1371/journal.pone.0211244
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