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In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation

The high specificity of antibodies for their antigen allows a fine discrimination of target conformations and post-translational modifications, making antibodies the first choice tool to interrogate the proteome. We describe here an approach based on a large-scale intracellular expression and select...

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Detalles Bibliográficos
Autores principales: Mazuc, Elsa, Guglielmi, Laurence, Bec, Nicole, Parez, Vincent, Hahn, Chang S., Mollevi, Caroline, Parrinello, Hugues, Desvignes, Jean-Pierre, Larroque, Christian, Jupp, Ray, Dariavach, Piona, Martineau, Pierre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4133367/
https://www.ncbi.nlm.nih.gov/pubmed/25122211
http://dx.doi.org/10.1371/journal.pone.0104998
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author Mazuc, Elsa
Guglielmi, Laurence
Bec, Nicole
Parez, Vincent
Hahn, Chang S.
Mollevi, Caroline
Parrinello, Hugues
Desvignes, Jean-Pierre
Larroque, Christian
Jupp, Ray
Dariavach, Piona
Martineau, Pierre
author_facet Mazuc, Elsa
Guglielmi, Laurence
Bec, Nicole
Parez, Vincent
Hahn, Chang S.
Mollevi, Caroline
Parrinello, Hugues
Desvignes, Jean-Pierre
Larroque, Christian
Jupp, Ray
Dariavach, Piona
Martineau, Pierre
author_sort Mazuc, Elsa
collection PubMed
description The high specificity of antibodies for their antigen allows a fine discrimination of target conformations and post-translational modifications, making antibodies the first choice tool to interrogate the proteome. We describe here an approach based on a large-scale intracellular expression and selection of antibody fragments in eukaryotic cells, so-called intrabodies, and the subsequent identification of their natural target within living cell. Starting from a phenotypic trait, this integrated system allows the identification of new therapeutic targets together with their companion inhibitory intrabody. We applied this system in a model of allergy and inflammation. We first cloned a large and highly diverse intrabody library both in a plasmid and a retroviral eukaryotic expression vector. After transfection in the RBL-2H3 rat basophilic leukemia cell line, we performed seven rounds of selection to isolate cells displaying a defect in FcεRI-induced degranulation. We used high throughput sequencing to identify intrabody sequences enriched during the course of selection. Only one intrabody was common to both plasmid and retroviral selections, and was used to capture and identify its target from cell extracts. Mass spectrometry analysis identified protein RGD1311164 (C12orf4), with no previously described function. Our data demonstrate that RGD1311164 is a cytoplasmic protein implicated in the early signaling events following FcεRI-induced cell activation. This work illustrates the strength of the intrabody-based in-cell selection, which allowed the identification of a new player in mast cell activation together with its specific inhibitor intrabody.
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spelling pubmed-41333672014-08-19 In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation Mazuc, Elsa Guglielmi, Laurence Bec, Nicole Parez, Vincent Hahn, Chang S. Mollevi, Caroline Parrinello, Hugues Desvignes, Jean-Pierre Larroque, Christian Jupp, Ray Dariavach, Piona Martineau, Pierre PLoS One Research Article The high specificity of antibodies for their antigen allows a fine discrimination of target conformations and post-translational modifications, making antibodies the first choice tool to interrogate the proteome. We describe here an approach based on a large-scale intracellular expression and selection of antibody fragments in eukaryotic cells, so-called intrabodies, and the subsequent identification of their natural target within living cell. Starting from a phenotypic trait, this integrated system allows the identification of new therapeutic targets together with their companion inhibitory intrabody. We applied this system in a model of allergy and inflammation. We first cloned a large and highly diverse intrabody library both in a plasmid and a retroviral eukaryotic expression vector. After transfection in the RBL-2H3 rat basophilic leukemia cell line, we performed seven rounds of selection to isolate cells displaying a defect in FcεRI-induced degranulation. We used high throughput sequencing to identify intrabody sequences enriched during the course of selection. Only one intrabody was common to both plasmid and retroviral selections, and was used to capture and identify its target from cell extracts. Mass spectrometry analysis identified protein RGD1311164 (C12orf4), with no previously described function. Our data demonstrate that RGD1311164 is a cytoplasmic protein implicated in the early signaling events following FcεRI-induced cell activation. This work illustrates the strength of the intrabody-based in-cell selection, which allowed the identification of a new player in mast cell activation together with its specific inhibitor intrabody. Public Library of Science 2014-08-14 /pmc/articles/PMC4133367/ /pubmed/25122211 http://dx.doi.org/10.1371/journal.pone.0104998 Text en © 2014 Mazuc 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
Mazuc, Elsa
Guglielmi, Laurence
Bec, Nicole
Parez, Vincent
Hahn, Chang S.
Mollevi, Caroline
Parrinello, Hugues
Desvignes, Jean-Pierre
Larroque, Christian
Jupp, Ray
Dariavach, Piona
Martineau, Pierre
In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation
title In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation
title_full In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation
title_fullStr In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation
title_full_unstemmed In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation
title_short In-Cell Intrabody Selection from a Diverse Human Library Identifies C12orf4 Protein as a New Player in Rodent Mast Cell Degranulation
title_sort in-cell intrabody selection from a diverse human library identifies c12orf4 protein as a new player in rodent mast cell degranulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4133367/
https://www.ncbi.nlm.nih.gov/pubmed/25122211
http://dx.doi.org/10.1371/journal.pone.0104998
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