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Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic

Immunity to intestinal helminth infections has been well studied, but the mechanism of helminth killing prior to expulsion remains unclear. Here we identify epithelial-cell-derived phospholipase A(2) group 1B (PLA(2)g1B) as a host-derived endogenous anthelmintic. PLA(2)g1B is elevated in resistant m...

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Autores principales: Entwistle, Lewis J., Pelly, Victoria S., Coomes, Stephanie M., Kannan, Yashaswini, Perez-Lloret, Jimena, Czieso, Stephanie, Silva dos Santos, Mariana, MacRae, James I., Collinson, Lucy, Sesay, Abdul, Nikolov, Nikolay, Metidji, Amina, Helmby, Helena, Hui, David Y., Wilson, Mark S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5644720/
https://www.ncbi.nlm.nih.gov/pubmed/29024642
http://dx.doi.org/10.1016/j.chom.2017.09.006
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author Entwistle, Lewis J.
Pelly, Victoria S.
Coomes, Stephanie M.
Kannan, Yashaswini
Perez-Lloret, Jimena
Czieso, Stephanie
Silva dos Santos, Mariana
MacRae, James I.
Collinson, Lucy
Sesay, Abdul
Nikolov, Nikolay
Metidji, Amina
Helmby, Helena
Hui, David Y.
Wilson, Mark S.
author_facet Entwistle, Lewis J.
Pelly, Victoria S.
Coomes, Stephanie M.
Kannan, Yashaswini
Perez-Lloret, Jimena
Czieso, Stephanie
Silva dos Santos, Mariana
MacRae, James I.
Collinson, Lucy
Sesay, Abdul
Nikolov, Nikolay
Metidji, Amina
Helmby, Helena
Hui, David Y.
Wilson, Mark S.
author_sort Entwistle, Lewis J.
collection PubMed
description Immunity to intestinal helminth infections has been well studied, but the mechanism of helminth killing prior to expulsion remains unclear. Here we identify epithelial-cell-derived phospholipase A(2) group 1B (PLA(2)g1B) as a host-derived endogenous anthelmintic. PLA(2)g1B is elevated in resistant mice and is responsible for killing tissue-embedded larvae. Despite comparable activities of other essential type-2-dependent immune mechanisms, Pla2g1b(−/−) mice failed to expel the intestinal helminths Heligmosomoides polygyrus or Nippostrongylus brasiliensis. Expression of Pla2g1b by epithelial cells was dependent upon intestinal microbiota, adaptive immunity, and common-gamma chain-dependent signaling. Notably, Pla2g1b was downregulated in susceptible mice and inhibited by IL-4R-signaling in vitro, uncoupling parasite killing from expulsion mechanisms. Resistance was restored in Pla2g1b(−/−) mice by treating infective H. polygyrus L3 larvae with PLA(2)g1B, which reduced larval phospholipid abundance. These findings uncover epithelial-cell-derived Pla2g1b as an essential mediator of helminth killing, highlighting a previously overlooked mechanism of anti-helminth immunity.
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spelling pubmed-56447202017-10-19 Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic Entwistle, Lewis J. Pelly, Victoria S. Coomes, Stephanie M. Kannan, Yashaswini Perez-Lloret, Jimena Czieso, Stephanie Silva dos Santos, Mariana MacRae, James I. Collinson, Lucy Sesay, Abdul Nikolov, Nikolay Metidji, Amina Helmby, Helena Hui, David Y. Wilson, Mark S. Cell Host Microbe Article Immunity to intestinal helminth infections has been well studied, but the mechanism of helminth killing prior to expulsion remains unclear. Here we identify epithelial-cell-derived phospholipase A(2) group 1B (PLA(2)g1B) as a host-derived endogenous anthelmintic. PLA(2)g1B is elevated in resistant mice and is responsible for killing tissue-embedded larvae. Despite comparable activities of other essential type-2-dependent immune mechanisms, Pla2g1b(−/−) mice failed to expel the intestinal helminths Heligmosomoides polygyrus or Nippostrongylus brasiliensis. Expression of Pla2g1b by epithelial cells was dependent upon intestinal microbiota, adaptive immunity, and common-gamma chain-dependent signaling. Notably, Pla2g1b was downregulated in susceptible mice and inhibited by IL-4R-signaling in vitro, uncoupling parasite killing from expulsion mechanisms. Resistance was restored in Pla2g1b(−/−) mice by treating infective H. polygyrus L3 larvae with PLA(2)g1B, which reduced larval phospholipid abundance. These findings uncover epithelial-cell-derived Pla2g1b as an essential mediator of helminth killing, highlighting a previously overlooked mechanism of anti-helminth immunity. Cell Press 2017-10-11 /pmc/articles/PMC5644720/ /pubmed/29024642 http://dx.doi.org/10.1016/j.chom.2017.09.006 Text en © 2017 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Entwistle, Lewis J.
Pelly, Victoria S.
Coomes, Stephanie M.
Kannan, Yashaswini
Perez-Lloret, Jimena
Czieso, Stephanie
Silva dos Santos, Mariana
MacRae, James I.
Collinson, Lucy
Sesay, Abdul
Nikolov, Nikolay
Metidji, Amina
Helmby, Helena
Hui, David Y.
Wilson, Mark S.
Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic
title Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic
title_full Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic
title_fullStr Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic
title_full_unstemmed Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic
title_short Epithelial-Cell-Derived Phospholipase A(2) Group 1B Is an Endogenous Anthelmintic
title_sort epithelial-cell-derived phospholipase a(2) group 1b is an endogenous anthelmintic
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5644720/
https://www.ncbi.nlm.nih.gov/pubmed/29024642
http://dx.doi.org/10.1016/j.chom.2017.09.006
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