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Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage

The opportunistic fungal pathogen Aspergillus fumigatus can cause life-threatening infections, particularly in immunocompromised patients. Most pathogenic microbes control host innate immune responses at the earliest time, already before infiltrating host immune cells arrive at the site of infection...

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Autores principales: Dasari, Prasad, Shopova, Iordana A., Stroe, Maria, Wartenberg, Dirk, Martin-Dahse, Hans, Beyersdorf, Niklas, Hortschansky, Peter, Dietrich, Stefanie, Cseresnyés, Zoltán, Figge, Marc Thilo, Westermann, Martin, Skerka, Christine, Brakhage, Axel A., Zipfel, Peter F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6106110/
https://www.ncbi.nlm.nih.gov/pubmed/30166981
http://dx.doi.org/10.3389/fimmu.2018.01635
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author Dasari, Prasad
Shopova, Iordana A.
Stroe, Maria
Wartenberg, Dirk
Martin-Dahse, Hans
Beyersdorf, Niklas
Hortschansky, Peter
Dietrich, Stefanie
Cseresnyés, Zoltán
Figge, Marc Thilo
Westermann, Martin
Skerka, Christine
Brakhage, Axel A.
Zipfel, Peter F.
author_facet Dasari, Prasad
Shopova, Iordana A.
Stroe, Maria
Wartenberg, Dirk
Martin-Dahse, Hans
Beyersdorf, Niklas
Hortschansky, Peter
Dietrich, Stefanie
Cseresnyés, Zoltán
Figge, Marc Thilo
Westermann, Martin
Skerka, Christine
Brakhage, Axel A.
Zipfel, Peter F.
author_sort Dasari, Prasad
collection PubMed
description The opportunistic fungal pathogen Aspergillus fumigatus can cause life-threatening infections, particularly in immunocompromised patients. Most pathogenic microbes control host innate immune responses at the earliest time, already before infiltrating host immune cells arrive at the site of infection. Here, we identify Aspf2 as the first A. fumigatus Factor H-binding protein. Aspf2 recruits several human plasma regulators, Factor H, factor-H-like protein 1 (FHL-1), FHR1, and plasminogen. Factor H contacts Aspf2 via two regions located in SCRs6–7 and SCR20. FHL-1 binds via SCRs6–7, and FHR1 via SCRs3–5. Factor H and FHL-1 attached to Aspf2-maintained cofactor activity and assisted in C3b inactivation. A Δaspf2 knockout strain was generated which bound Factor H with 28% and FHL-1 with 42% lower intensity. In agreement with less immune regulator acquisition, when challenged with complement-active normal human serum, Δaspf2 conidia had substantially more C3b (>57%) deposited on their surface. Consequently, Δaspf2 conidia were more efficiently phagocytosed (>20%) and killed (44%) by human neutrophils as wild-type conidia. Furthermore, Aspf2 recruited human plasminogen and, when activated by tissue-type plasminogen activator, newly generated plasmin cleaved the chromogenic substrate S2251 and degraded fibrinogen. Furthermore, plasmin attached to conidia damaged human lung epithelial cells, induced cell retraction, and caused matrix exposure. Thus, Aspf2 is a central immune evasion protein and plasminogen ligand of A. fumigatus. By blocking host innate immune attack and by disrupting human lung epithelial cell layers, Aspf2 assists in early steps of fungal infection and likely allows tissue penetration.
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spelling pubmed-61061102018-08-30 Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage Dasari, Prasad Shopova, Iordana A. Stroe, Maria Wartenberg, Dirk Martin-Dahse, Hans Beyersdorf, Niklas Hortschansky, Peter Dietrich, Stefanie Cseresnyés, Zoltán Figge, Marc Thilo Westermann, Martin Skerka, Christine Brakhage, Axel A. Zipfel, Peter F. Front Immunol Immunology The opportunistic fungal pathogen Aspergillus fumigatus can cause life-threatening infections, particularly in immunocompromised patients. Most pathogenic microbes control host innate immune responses at the earliest time, already before infiltrating host immune cells arrive at the site of infection. Here, we identify Aspf2 as the first A. fumigatus Factor H-binding protein. Aspf2 recruits several human plasma regulators, Factor H, factor-H-like protein 1 (FHL-1), FHR1, and plasminogen. Factor H contacts Aspf2 via two regions located in SCRs6–7 and SCR20. FHL-1 binds via SCRs6–7, and FHR1 via SCRs3–5. Factor H and FHL-1 attached to Aspf2-maintained cofactor activity and assisted in C3b inactivation. A Δaspf2 knockout strain was generated which bound Factor H with 28% and FHL-1 with 42% lower intensity. In agreement with less immune regulator acquisition, when challenged with complement-active normal human serum, Δaspf2 conidia had substantially more C3b (>57%) deposited on their surface. Consequently, Δaspf2 conidia were more efficiently phagocytosed (>20%) and killed (44%) by human neutrophils as wild-type conidia. Furthermore, Aspf2 recruited human plasminogen and, when activated by tissue-type plasminogen activator, newly generated plasmin cleaved the chromogenic substrate S2251 and degraded fibrinogen. Furthermore, plasmin attached to conidia damaged human lung epithelial cells, induced cell retraction, and caused matrix exposure. Thus, Aspf2 is a central immune evasion protein and plasminogen ligand of A. fumigatus. By blocking host innate immune attack and by disrupting human lung epithelial cell layers, Aspf2 assists in early steps of fungal infection and likely allows tissue penetration. Frontiers Media S.A. 2018-08-03 /pmc/articles/PMC6106110/ /pubmed/30166981 http://dx.doi.org/10.3389/fimmu.2018.01635 Text en Copyright © 2018 Dasari, Shopova, Stroe, Wartenberg, Martin-Dahse, Beyersdorf, Hortschansky, Dietrich, Cseresnyés, Figge, Westermann, Skerka, Brakhage and Zipfel. https://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) and the copyright owner(s) 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
Dasari, Prasad
Shopova, Iordana A.
Stroe, Maria
Wartenberg, Dirk
Martin-Dahse, Hans
Beyersdorf, Niklas
Hortschansky, Peter
Dietrich, Stefanie
Cseresnyés, Zoltán
Figge, Marc Thilo
Westermann, Martin
Skerka, Christine
Brakhage, Axel A.
Zipfel, Peter F.
Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage
title Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage
title_full Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage
title_fullStr Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage
title_full_unstemmed Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage
title_short Aspf2 From Aspergillus fumigatus Recruits Human Immune Regulators for Immune Evasion and Cell Damage
title_sort aspf2 from aspergillus fumigatus recruits human immune regulators for immune evasion and cell damage
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6106110/
https://www.ncbi.nlm.nih.gov/pubmed/30166981
http://dx.doi.org/10.3389/fimmu.2018.01635
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