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Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35

The Interleukin (IL)-12 family contains several heterodimeric composite cytokines which share subunits among each other. IL-12 consists of the subunits p40 (shared with IL-23) and p35. p35 is shared with the composite cytokine IL-35 which comprises of the p35/EBI3 heterodimer (EBI3 shared with IL-27...

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Autores principales: Aparicio-Siegmund, Samadhi, Moll, Jens M., Lokau, Juliane, Grusdat, Melanie, Schröder, Jutta, Plöhn, Svenja, Rose-John, Stefan, Grötzinger, Joachim, Lang, Philipp A., Scheller, Jürgen, Garbers, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178060/
https://www.ncbi.nlm.nih.gov/pubmed/25259790
http://dx.doi.org/10.1371/journal.pone.0107990
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author Aparicio-Siegmund, Samadhi
Moll, Jens M.
Lokau, Juliane
Grusdat, Melanie
Schröder, Jutta
Plöhn, Svenja
Rose-John, Stefan
Grötzinger, Joachim
Lang, Philipp A.
Scheller, Jürgen
Garbers, Christoph
author_facet Aparicio-Siegmund, Samadhi
Moll, Jens M.
Lokau, Juliane
Grusdat, Melanie
Schröder, Jutta
Plöhn, Svenja
Rose-John, Stefan
Grötzinger, Joachim
Lang, Philipp A.
Scheller, Jürgen
Garbers, Christoph
author_sort Aparicio-Siegmund, Samadhi
collection PubMed
description The Interleukin (IL)-12 family contains several heterodimeric composite cytokines which share subunits among each other. IL-12 consists of the subunits p40 (shared with IL-23) and p35. p35 is shared with the composite cytokine IL-35 which comprises of the p35/EBI3 heterodimer (EBI3 shared with IL-27). IL-35 signals via homo- or heterodimers of IL-12Rβ2, gp130 and WSX-1, which are shared with IL-12 and IL-27 receptor complexes, respectively. p35 was efficiently secreted in complex with p40 as IL-12 but not with EBI3 as IL-35 in several transfected cell lines tested which complicates the analysis of IL-35 signal transduction. p35 and p40 but not p35 and EBI3 form an inter-chain disulfide bridge. Mutation of the responsible cysteine residue (p40(C197A)) reduced IL-12 formation and activity only slightly. Importantly, the p40(C197A) mutation prevented the formation of antagonistic p40 homodimers which enabled the in vitro reconstitution of biologically active IL-12 with p35 produced in bacteria (p35(bac)). Reconstitution of IL-35 with p35(bac) and EBI3 did, however, fail to induce signal transduction in Ba/F3 cells expressing IL-12Rβ2 and gp130. In summary, we describe the in vitro reconstitution of IL-12, but fail to produce recombinant IL-35 by this novel approach.
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spelling pubmed-41780602014-10-02 Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35 Aparicio-Siegmund, Samadhi Moll, Jens M. Lokau, Juliane Grusdat, Melanie Schröder, Jutta Plöhn, Svenja Rose-John, Stefan Grötzinger, Joachim Lang, Philipp A. Scheller, Jürgen Garbers, Christoph PLoS One Research Article The Interleukin (IL)-12 family contains several heterodimeric composite cytokines which share subunits among each other. IL-12 consists of the subunits p40 (shared with IL-23) and p35. p35 is shared with the composite cytokine IL-35 which comprises of the p35/EBI3 heterodimer (EBI3 shared with IL-27). IL-35 signals via homo- or heterodimers of IL-12Rβ2, gp130 and WSX-1, which are shared with IL-12 and IL-27 receptor complexes, respectively. p35 was efficiently secreted in complex with p40 as IL-12 but not with EBI3 as IL-35 in several transfected cell lines tested which complicates the analysis of IL-35 signal transduction. p35 and p40 but not p35 and EBI3 form an inter-chain disulfide bridge. Mutation of the responsible cysteine residue (p40(C197A)) reduced IL-12 formation and activity only slightly. Importantly, the p40(C197A) mutation prevented the formation of antagonistic p40 homodimers which enabled the in vitro reconstitution of biologically active IL-12 with p35 produced in bacteria (p35(bac)). Reconstitution of IL-35 with p35(bac) and EBI3 did, however, fail to induce signal transduction in Ba/F3 cells expressing IL-12Rβ2 and gp130. In summary, we describe the in vitro reconstitution of IL-12, but fail to produce recombinant IL-35 by this novel approach. Public Library of Science 2014-09-26 /pmc/articles/PMC4178060/ /pubmed/25259790 http://dx.doi.org/10.1371/journal.pone.0107990 Text en © 2014 Aparicio-Siegmund et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Aparicio-Siegmund, Samadhi
Moll, Jens M.
Lokau, Juliane
Grusdat, Melanie
Schröder, Jutta
Plöhn, Svenja
Rose-John, Stefan
Grötzinger, Joachim
Lang, Philipp A.
Scheller, Jürgen
Garbers, Christoph
Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35
title Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35
title_full Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35
title_fullStr Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35
title_full_unstemmed Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35
title_short Recombinant p35 from Bacteria Can Form Interleukin (IL-)12, but Not IL-35
title_sort recombinant p35 from bacteria can form interleukin (il-)12, but not il-35
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178060/
https://www.ncbi.nlm.nih.gov/pubmed/25259790
http://dx.doi.org/10.1371/journal.pone.0107990
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