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MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus

Helminth parasites remain one of the most common causes of infections worldwide, yet little is still known about the immune signaling pathways that control their expulsion. C57BL/6 mice are chronically susceptible to infection with the gastrointestinal helminth parasite Heligmosomoides polygyrus. In...

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Autores principales: Reynolds, Lisa A., Harcus, Yvonne, Smith, Katherine A., Webb, Lauren M., Hewitson, James P., Ross, Ewan A., Brown, Sheila, Uematsu, Satoshi, Akira, Shizuo, Gray, David, Gray, Mohini, MacDonald, Andrew S., Cunningham, Adam F., Maizels, Rick M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4157852/
https://www.ncbi.nlm.nih.gov/pubmed/25114104
http://dx.doi.org/10.4049/jimmunol.1401056
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author Reynolds, Lisa A.
Harcus, Yvonne
Smith, Katherine A.
Webb, Lauren M.
Hewitson, James P.
Ross, Ewan A.
Brown, Sheila
Uematsu, Satoshi
Akira, Shizuo
Gray, David
Gray, Mohini
MacDonald, Andrew S.
Cunningham, Adam F.
Maizels, Rick M.
author_facet Reynolds, Lisa A.
Harcus, Yvonne
Smith, Katherine A.
Webb, Lauren M.
Hewitson, James P.
Ross, Ewan A.
Brown, Sheila
Uematsu, Satoshi
Akira, Shizuo
Gray, David
Gray, Mohini
MacDonald, Andrew S.
Cunningham, Adam F.
Maizels, Rick M.
author_sort Reynolds, Lisa A.
collection PubMed
description Helminth parasites remain one of the most common causes of infections worldwide, yet little is still known about the immune signaling pathways that control their expulsion. C57BL/6 mice are chronically susceptible to infection with the gastrointestinal helminth parasite Heligmosomoides polygyrus. In this article, we report that C57BL/6 mice lacking the adapter protein MyD88, which mediates signaling by TLRs and IL-1 family members, showed enhanced immunity to H. polygyrus infection. Alongside increased parasite expulsion, MyD88-deficient mice showed heightened IL-4 and IL-17A production from mesenteric lymph node CD4(+) cells. In addition, MyD88(−/−) mice developed substantial numbers of intestinal granulomas around the site of infection, which were not seen in MyD88-sufficient C57BL/6 mice, nor when signaling through the adapter protein TRIF (TIR domain–containing adapter–inducing IFN-β adapter protein) was also ablated. Mice deficient solely in TLR2, TLR4, TLR5, or TLR9 did not show enhanced parasite expulsion, suggesting that these TLRs signal redundantly to maintain H. polygyrus susceptibility in wild-type mice. To further investigate signaling pathways that are MyD88 dependent, we infected IL-1R1(−/−) mice with H. polygyrus. This genotype displayed heightened granuloma numbers compared with wild-type mice, but without increased parasite expulsion. Thus, the IL-1R–MyD88 pathway is implicated in inhibiting granuloma formation; however, protective immunity in MyD88-deficient mice appears to be granuloma independent. Like IL-1R1(−/−) and MyD88(−/−) mice, animals lacking signaling through the type 1 IFN receptor (i.e., IFNAR1(−/−)) also developed intestinal granulomas. Hence, IL-1R1, MyD88, and type 1 IFN receptor signaling may provide pathways to impede granuloma formation in vivo, but additional MyD88-mediated signals are associated with inhibition of protective immunity in susceptible C57BL/6 mice.
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spelling pubmed-41578522014-09-12 MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus Reynolds, Lisa A. Harcus, Yvonne Smith, Katherine A. Webb, Lauren M. Hewitson, James P. Ross, Ewan A. Brown, Sheila Uematsu, Satoshi Akira, Shizuo Gray, David Gray, Mohini MacDonald, Andrew S. Cunningham, Adam F. Maizels, Rick M. J Immunol Infectious Disease and Host Response Helminth parasites remain one of the most common causes of infections worldwide, yet little is still known about the immune signaling pathways that control their expulsion. C57BL/6 mice are chronically susceptible to infection with the gastrointestinal helminth parasite Heligmosomoides polygyrus. In this article, we report that C57BL/6 mice lacking the adapter protein MyD88, which mediates signaling by TLRs and IL-1 family members, showed enhanced immunity to H. polygyrus infection. Alongside increased parasite expulsion, MyD88-deficient mice showed heightened IL-4 and IL-17A production from mesenteric lymph node CD4(+) cells. In addition, MyD88(−/−) mice developed substantial numbers of intestinal granulomas around the site of infection, which were not seen in MyD88-sufficient C57BL/6 mice, nor when signaling through the adapter protein TRIF (TIR domain–containing adapter–inducing IFN-β adapter protein) was also ablated. Mice deficient solely in TLR2, TLR4, TLR5, or TLR9 did not show enhanced parasite expulsion, suggesting that these TLRs signal redundantly to maintain H. polygyrus susceptibility in wild-type mice. To further investigate signaling pathways that are MyD88 dependent, we infected IL-1R1(−/−) mice with H. polygyrus. This genotype displayed heightened granuloma numbers compared with wild-type mice, but without increased parasite expulsion. Thus, the IL-1R–MyD88 pathway is implicated in inhibiting granuloma formation; however, protective immunity in MyD88-deficient mice appears to be granuloma independent. Like IL-1R1(−/−) and MyD88(−/−) mice, animals lacking signaling through the type 1 IFN receptor (i.e., IFNAR1(−/−)) also developed intestinal granulomas. Hence, IL-1R1, MyD88, and type 1 IFN receptor signaling may provide pathways to impede granuloma formation in vivo, but additional MyD88-mediated signals are associated with inhibition of protective immunity in susceptible C57BL/6 mice. AAI 2014-09-15 2014-08-11 /pmc/articles/PMC4157852/ /pubmed/25114104 http://dx.doi.org/10.4049/jimmunol.1401056 Text en Copyright © 2014 The Authors This is an open-access article distributed under the terms of the CC-BY 3.0 Unported license.
spellingShingle Infectious Disease and Host Response
Reynolds, Lisa A.
Harcus, Yvonne
Smith, Katherine A.
Webb, Lauren M.
Hewitson, James P.
Ross, Ewan A.
Brown, Sheila
Uematsu, Satoshi
Akira, Shizuo
Gray, David
Gray, Mohini
MacDonald, Andrew S.
Cunningham, Adam F.
Maizels, Rick M.
MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus
title MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus
title_full MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus
title_fullStr MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus
title_full_unstemmed MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus
title_short MyD88 Signaling Inhibits Protective Immunity to the Gastrointestinal Helminth Parasite Heligmosomoides polygyrus
title_sort myd88 signaling inhibits protective immunity to the gastrointestinal helminth parasite heligmosomoides polygyrus
topic Infectious Disease and Host Response
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4157852/
https://www.ncbi.nlm.nih.gov/pubmed/25114104
http://dx.doi.org/10.4049/jimmunol.1401056
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