Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction: Implications for neutrophil-mediated immune mechanisms in malaria

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Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction : Implications for neutrophil-mediated immune mechanisms in malaria. / Simtong, Piyapong; Romphruk, Amornrat V; Traum, Annalena; Burg-Roderfeld, Monika; Bein, Gregor; Jakubowski, Konstantin; Dominik, Andreas; Theisen, Michael; Kana, Ikhlaq Hussain; Sachs, Ulrich J; Santoso, Sentot.

In: Infection and Immunity, Vol. 86, No. 8, e00924-17, 2018.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Simtong, P, Romphruk, AV, Traum, A, Burg-Roderfeld, M, Bein, G, Jakubowski, K, Dominik, A, Theisen, M, Kana, IH, Sachs, UJ & Santoso, S 2018, 'Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction: Implications for neutrophil-mediated immune mechanisms in malaria', Infection and Immunity, vol. 86, no. 8, e00924-17. https://doi.org/10.1128/IAI.00924-17

APA

Simtong, P., Romphruk, A. V., Traum, A., Burg-Roderfeld, M., Bein, G., Jakubowski, K., Dominik, A., Theisen, M., Kana, I. H., Sachs, U. J., & Santoso, S. (2018). Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction: Implications for neutrophil-mediated immune mechanisms in malaria. Infection and Immunity, 86(8), [e00924-17]. https://doi.org/10.1128/IAI.00924-17

Vancouver

Simtong P, Romphruk AV, Traum A, Burg-Roderfeld M, Bein G, Jakubowski K et al. Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction: Implications for neutrophil-mediated immune mechanisms in malaria. Infection and Immunity. 2018;86(8). e00924-17. https://doi.org/10.1128/IAI.00924-17

Author

Simtong, Piyapong ; Romphruk, Amornrat V ; Traum, Annalena ; Burg-Roderfeld, Monika ; Bein, Gregor ; Jakubowski, Konstantin ; Dominik, Andreas ; Theisen, Michael ; Kana, Ikhlaq Hussain ; Sachs, Ulrich J ; Santoso, Sentot. / Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction : Implications for neutrophil-mediated immune mechanisms in malaria. In: Infection and Immunity. 2018 ; Vol. 86, No. 8.

Bibtex

@article{157106e1bfb24afca5f81f8a066ce403,
title = "Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction: Implications for neutrophil-mediated immune mechanisms in malaria",
abstract = "The Fcγ receptor IIIb (FcγRIIIb) is a low-affinity receptor of IgG and is essential in neutrophil-mediated effector functions. Different allelic forms of FcγRIIIb carrying human neutrophil antigen (HNA-1a, -1b, -1c, and -1d) have been identified. Here, we have generated stable transfected HEK293 cell lines expressing HNA-1aa, -1bb, and -1bc. Of these, cells expressing HNA-1bc interacted significantly stronger (binding affinities, 2.277 versus 0.743) with human IgG than cells expressing the HNA-1aa or -1bb alloforms. The higher affinity of IgG toward the HNA-1c alloform was confirmed using neutrophils derived from German blood donors. Neutrophils from HNA-1abc-phenotyped individuals bound IgG significantly stronger (1.825 versus 0.903) than did neutrophils from HNA-1ab-typed individuals. These findings were confirmed by surface plasmon resonance (SPR) analysis demonstrating that recombinant HNA-1bc had a higher affinity (dissociation constant [Kd ], 7.24 × 10-6 M) than recombinant HNA-1bb (Kd , 1.15 × 10-5 M) against normal IgG. Finally, we demonstrated that Plasmodium falciparum merozoites opsonized with human IgG affinity purified against P. falciparum glutamate-rich protein (GLURP) enhanced stronger reactive oxygen species (ROS) emission in neutrophils obtained from HNA-1abc donors than in neutrophils from HNA-1ab donors. Collectively, these results indicate that the amino acid substitution Ala78Asp resulting in the HNA-1c allotype leads to higher affinity toward human IgG, enhancement of neutrophil activation, and possibly effective clearance of malaria by intracellular ROS.",
author = "Piyapong Simtong and Romphruk, {Amornrat V} and Annalena Traum and Monika Burg-Roderfeld and Gregor Bein and Konstantin Jakubowski and Andreas Dominik and Michael Theisen and Kana, {Ikhlaq Hussain} and Sachs, {Ulrich J} and Sentot Santoso",
note = "Copyright {\textcopyright} 2018 American Society for Microbiology.",
year = "2018",
doi = "10.1128/IAI.00924-17",
language = "English",
volume = "86",
journal = "Infection and Immunity",
issn = "0019-9567",
publisher = "American Society for Microbiology",
number = "8",

}

RIS

TY - JOUR

T1 - Molecular and functional characterization of Fcγ receptor IIIb-ligand interaction

T2 - Implications for neutrophil-mediated immune mechanisms in malaria

AU - Simtong, Piyapong

AU - Romphruk, Amornrat V

AU - Traum, Annalena

AU - Burg-Roderfeld, Monika

AU - Bein, Gregor

AU - Jakubowski, Konstantin

AU - Dominik, Andreas

AU - Theisen, Michael

AU - Kana, Ikhlaq Hussain

AU - Sachs, Ulrich J

AU - Santoso, Sentot

N1 - Copyright © 2018 American Society for Microbiology.

PY - 2018

Y1 - 2018

N2 - The Fcγ receptor IIIb (FcγRIIIb) is a low-affinity receptor of IgG and is essential in neutrophil-mediated effector functions. Different allelic forms of FcγRIIIb carrying human neutrophil antigen (HNA-1a, -1b, -1c, and -1d) have been identified. Here, we have generated stable transfected HEK293 cell lines expressing HNA-1aa, -1bb, and -1bc. Of these, cells expressing HNA-1bc interacted significantly stronger (binding affinities, 2.277 versus 0.743) with human IgG than cells expressing the HNA-1aa or -1bb alloforms. The higher affinity of IgG toward the HNA-1c alloform was confirmed using neutrophils derived from German blood donors. Neutrophils from HNA-1abc-phenotyped individuals bound IgG significantly stronger (1.825 versus 0.903) than did neutrophils from HNA-1ab-typed individuals. These findings were confirmed by surface plasmon resonance (SPR) analysis demonstrating that recombinant HNA-1bc had a higher affinity (dissociation constant [Kd ], 7.24 × 10-6 M) than recombinant HNA-1bb (Kd , 1.15 × 10-5 M) against normal IgG. Finally, we demonstrated that Plasmodium falciparum merozoites opsonized with human IgG affinity purified against P. falciparum glutamate-rich protein (GLURP) enhanced stronger reactive oxygen species (ROS) emission in neutrophils obtained from HNA-1abc donors than in neutrophils from HNA-1ab donors. Collectively, these results indicate that the amino acid substitution Ala78Asp resulting in the HNA-1c allotype leads to higher affinity toward human IgG, enhancement of neutrophil activation, and possibly effective clearance of malaria by intracellular ROS.

AB - The Fcγ receptor IIIb (FcγRIIIb) is a low-affinity receptor of IgG and is essential in neutrophil-mediated effector functions. Different allelic forms of FcγRIIIb carrying human neutrophil antigen (HNA-1a, -1b, -1c, and -1d) have been identified. Here, we have generated stable transfected HEK293 cell lines expressing HNA-1aa, -1bb, and -1bc. Of these, cells expressing HNA-1bc interacted significantly stronger (binding affinities, 2.277 versus 0.743) with human IgG than cells expressing the HNA-1aa or -1bb alloforms. The higher affinity of IgG toward the HNA-1c alloform was confirmed using neutrophils derived from German blood donors. Neutrophils from HNA-1abc-phenotyped individuals bound IgG significantly stronger (1.825 versus 0.903) than did neutrophils from HNA-1ab-typed individuals. These findings were confirmed by surface plasmon resonance (SPR) analysis demonstrating that recombinant HNA-1bc had a higher affinity (dissociation constant [Kd ], 7.24 × 10-6 M) than recombinant HNA-1bb (Kd , 1.15 × 10-5 M) against normal IgG. Finally, we demonstrated that Plasmodium falciparum merozoites opsonized with human IgG affinity purified against P. falciparum glutamate-rich protein (GLURP) enhanced stronger reactive oxygen species (ROS) emission in neutrophils obtained from HNA-1abc donors than in neutrophils from HNA-1ab donors. Collectively, these results indicate that the amino acid substitution Ala78Asp resulting in the HNA-1c allotype leads to higher affinity toward human IgG, enhancement of neutrophil activation, and possibly effective clearance of malaria by intracellular ROS.

U2 - 10.1128/IAI.00924-17

DO - 10.1128/IAI.00924-17

M3 - Journal article

C2 - 29784860

VL - 86

JO - Infection and Immunity

JF - Infection and Immunity

SN - 0019-9567

IS - 8

M1 - e00924-17

ER -

ID: 200967043