Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.

Bacterial superantigens, a diverse family of toxins, induce an inflammatory cytokine storm that can lead to lethal shock. CD28 is a homodimer expressed on T cells that functions as the principal costimulatory ligand in the immune response through an interaction with its B7 coligands, yet we show her...

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Main Authors: Gila Arad, Revital Levy, Iris Nasie, Dalia Hillman, Ziv Rotfogel, Uri Barash, Emmanuelle Supper, Tomer Shpilka, Adi Minis, Raymond Kaempfer
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-09-01
Series:PLoS Biology
Online Access:http://europepmc.org/articles/PMC3172200?pdf=render
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spelling doaj-2c5298f26ef74f0fa8ebd46414d22eec2021-07-02T06:24:38ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852011-09-0199e100114910.1371/journal.pbio.1001149Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.Gila AradRevital LevyIris NasieDalia HillmanZiv RotfogelUri BarashEmmanuelle SupperTomer ShpilkaAdi MinisRaymond KaempferBacterial superantigens, a diverse family of toxins, induce an inflammatory cytokine storm that can lead to lethal shock. CD28 is a homodimer expressed on T cells that functions as the principal costimulatory ligand in the immune response through an interaction with its B7 coligands, yet we show here that to elicit inflammatory cytokine gene expression and toxicity, superantigens must bind directly into the dimer interface of CD28. Preventing access of the superantigen to CD28 suffices to block its lethality. Mice were protected from lethal superantigen challenge by short peptide mimetics of the CD28 dimer interface and by peptides selected to compete with the superantigen for its binding site in CD28. Superantigens use a conserved β-strand/hinge/α-helix domain of hitherto unknown function to engage CD28. Mutation of this superantigen domain abolished inflammatory cytokine gene induction and lethality. Structural analysis showed that when a superantigen binds to the T cell receptor on the T cell and major histocompatibility class II molecule on the antigen-presenting cell, CD28 can be accommodated readily as third superantigen receptor in the quaternary complex, with the CD28 dimer interface oriented towards the β-strand/hinge/α-helix domain in the superantigen. Our findings identify the CD28 homodimer interface as a critical receptor target for superantigens. The novel role of CD28 as receptor for a class of microbial pathogens, the superantigen toxins, broadens the scope of pathogen recognition mechanisms.http://europepmc.org/articles/PMC3172200?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Gila Arad
Revital Levy
Iris Nasie
Dalia Hillman
Ziv Rotfogel
Uri Barash
Emmanuelle Supper
Tomer Shpilka
Adi Minis
Raymond Kaempfer
spellingShingle Gila Arad
Revital Levy
Iris Nasie
Dalia Hillman
Ziv Rotfogel
Uri Barash
Emmanuelle Supper
Tomer Shpilka
Adi Minis
Raymond Kaempfer
Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
PLoS Biology
author_facet Gila Arad
Revital Levy
Iris Nasie
Dalia Hillman
Ziv Rotfogel
Uri Barash
Emmanuelle Supper
Tomer Shpilka
Adi Minis
Raymond Kaempfer
author_sort Gila Arad
title Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
title_short Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
title_full Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
title_fullStr Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
title_full_unstemmed Binding of superantigen toxins into the CD28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
title_sort binding of superantigen toxins into the cd28 homodimer interface is essential for induction of cytokine genes that mediate lethal shock.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2011-09-01
description Bacterial superantigens, a diverse family of toxins, induce an inflammatory cytokine storm that can lead to lethal shock. CD28 is a homodimer expressed on T cells that functions as the principal costimulatory ligand in the immune response through an interaction with its B7 coligands, yet we show here that to elicit inflammatory cytokine gene expression and toxicity, superantigens must bind directly into the dimer interface of CD28. Preventing access of the superantigen to CD28 suffices to block its lethality. Mice were protected from lethal superantigen challenge by short peptide mimetics of the CD28 dimer interface and by peptides selected to compete with the superantigen for its binding site in CD28. Superantigens use a conserved β-strand/hinge/α-helix domain of hitherto unknown function to engage CD28. Mutation of this superantigen domain abolished inflammatory cytokine gene induction and lethality. Structural analysis showed that when a superantigen binds to the T cell receptor on the T cell and major histocompatibility class II molecule on the antigen-presenting cell, CD28 can be accommodated readily as third superantigen receptor in the quaternary complex, with the CD28 dimer interface oriented towards the β-strand/hinge/α-helix domain in the superantigen. Our findings identify the CD28 homodimer interface as a critical receptor target for superantigens. The novel role of CD28 as receptor for a class of microbial pathogens, the superantigen toxins, broadens the scope of pathogen recognition mechanisms.
url http://europepmc.org/articles/PMC3172200?pdf=render
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