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Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy

As a multicellular parasitic nematode, Trichinella spiralis regulates host immune responses by producing a variety of immunomodulatory molecules to escape from host immune attack, but the mechanisms underlying the immune evasion are not well understood. Here, we identified that T. spiralis calreticu...

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Autores principales: Zhao, Limei, Shao, Shuai, Chen, Yi, Sun, Ximeng, Sun, Ran, Huang, Jingjing, Zhan, Bin, Zhu, Xinping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5449505/
https://www.ncbi.nlm.nih.gov/pubmed/28620388
http://dx.doi.org/10.3389/fimmu.2017.00636
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author Zhao, Limei
Shao, Shuai
Chen, Yi
Sun, Ximeng
Sun, Ran
Huang, Jingjing
Zhan, Bin
Zhu, Xinping
author_facet Zhao, Limei
Shao, Shuai
Chen, Yi
Sun, Ximeng
Sun, Ran
Huang, Jingjing
Zhan, Bin
Zhu, Xinping
author_sort Zhao, Limei
collection PubMed
description As a multicellular parasitic nematode, Trichinella spiralis regulates host immune responses by producing a variety of immunomodulatory molecules to escape from host immune attack, but the mechanisms underlying the immune evasion are not well understood. Here, we identified that T. spiralis calreticulin (Ts-CRT), a Ca(2+)-binding protein, facilitated T. spiralis immune evasion by interacting with the first component of human classical complement pathway, C1q. In the present study, Ts-CRT was found to be expressed on the surface of different developmental stages of T. spiralis as well as in the secreted products of adult and muscle larval worms. Functional analysis identified that Ts-CRT was able to bind to human C1q, resulting in the inhibition of C1q-initiated complement classical activation pathway reflected by reduced C4/C3 generation and C1q-dependent lysis of antibody-sensitized sheep erythrocytes. Moreover, recombinant Ts-CRT (rTs-CRT) binding to C1q suppressed C1q-induced THP-1-derived macrophages chemotaxis and reduced monocyte–macrophages release of reactive oxygen intermediates (ROIs). Blocking Ts-CRT on the surface of newborn larvae (NBL) of T. spiralis with anti-Ts-CRT antibody increased the C1q-mediated adherence of monocyte–macrophages to larvae and impaired larval infectivity. All of these results suggest that T. spiralis-expressed Ts-CRT plays crucial roles in T. spiralis immune evasion and survival in host mostly by directly binding to host complement C1q, which not only reduces C1q-mediated activation of classical complement pathway but also inhibits the C1q-induced non-complement activation of macrophages.
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spelling pubmed-54495052017-06-15 Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy Zhao, Limei Shao, Shuai Chen, Yi Sun, Ximeng Sun, Ran Huang, Jingjing Zhan, Bin Zhu, Xinping Front Immunol Immunology As a multicellular parasitic nematode, Trichinella spiralis regulates host immune responses by producing a variety of immunomodulatory molecules to escape from host immune attack, but the mechanisms underlying the immune evasion are not well understood. Here, we identified that T. spiralis calreticulin (Ts-CRT), a Ca(2+)-binding protein, facilitated T. spiralis immune evasion by interacting with the first component of human classical complement pathway, C1q. In the present study, Ts-CRT was found to be expressed on the surface of different developmental stages of T. spiralis as well as in the secreted products of adult and muscle larval worms. Functional analysis identified that Ts-CRT was able to bind to human C1q, resulting in the inhibition of C1q-initiated complement classical activation pathway reflected by reduced C4/C3 generation and C1q-dependent lysis of antibody-sensitized sheep erythrocytes. Moreover, recombinant Ts-CRT (rTs-CRT) binding to C1q suppressed C1q-induced THP-1-derived macrophages chemotaxis and reduced monocyte–macrophages release of reactive oxygen intermediates (ROIs). Blocking Ts-CRT on the surface of newborn larvae (NBL) of T. spiralis with anti-Ts-CRT antibody increased the C1q-mediated adherence of monocyte–macrophages to larvae and impaired larval infectivity. All of these results suggest that T. spiralis-expressed Ts-CRT plays crucial roles in T. spiralis immune evasion and survival in host mostly by directly binding to host complement C1q, which not only reduces C1q-mediated activation of classical complement pathway but also inhibits the C1q-induced non-complement activation of macrophages. Frontiers Media S.A. 2017-05-31 /pmc/articles/PMC5449505/ /pubmed/28620388 http://dx.doi.org/10.3389/fimmu.2017.00636 Text en Copyright © 2017 Zhao, Shao, Chen, Sun, Sun, Huang, Zhan and Zhu. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Zhao, Limei
Shao, Shuai
Chen, Yi
Sun, Ximeng
Sun, Ran
Huang, Jingjing
Zhan, Bin
Zhu, Xinping
Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy
title Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy
title_full Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy
title_fullStr Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy
title_full_unstemmed Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy
title_short Trichinella spiralis Calreticulin Binds Human Complement C1q As an Immune Evasion Strategy
title_sort trichinella spiralis calreticulin binds human complement c1q as an immune evasion strategy
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5449505/
https://www.ncbi.nlm.nih.gov/pubmed/28620388
http://dx.doi.org/10.3389/fimmu.2017.00636
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