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DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells

BACKGROUND: The advent of Systems Biology has been accompanied by the blooming of pathway databases. Currently pathways are defined generically with respect to the organ or cell type where a reaction takes place. The cell type specificity of the reactions is the foundation of immunological research,...

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Autores principales: Cavalieri, Duccio, Rivero, Damariz, Beltrame, Luca, Buschow, Sonja I, Calura, Enrica, Rizzetto, Lisa, Gessani, Sandra, Gauzzi, Maria C, Reith, Walter, Baur, Andreas, Bonaiuti, Roberto, Brandizi, Marco, De Filippo, Carlotta, D'Oro, Ugo, Draghici, Sorin, Dunand-Sauthier, Isabelle, Gatti, Evelina, Granucci, Francesca, Gündel, Michaela, Kramer, Matthijs, Kuka, Mirela, Lanyi, Arpad, Melief, Cornelis JM, van Montfoort, Nadine, Ostuni, Renato, Pierre, Philippe, Popovici, Razvan, Rajnavolgyi, Eva, Schierer, Stephan, Schuler, Gerold, Soumelis, Vassili, Splendiani, Andrea, Stefanini, Irene, Torcia, Maria G, Zanoni, Ivan, Zollinger, Raphael, Figdor, Carl G, Austyn, Jonathan M
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3000836/
https://www.ncbi.nlm.nih.gov/pubmed/21092113
http://dx.doi.org/10.1186/1745-7580-6-10
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author Cavalieri, Duccio
Rivero, Damariz
Beltrame, Luca
Buschow, Sonja I
Calura, Enrica
Rizzetto, Lisa
Gessani, Sandra
Gauzzi, Maria C
Reith, Walter
Baur, Andreas
Bonaiuti, Roberto
Brandizi, Marco
De Filippo, Carlotta
D'Oro, Ugo
Draghici, Sorin
Dunand-Sauthier, Isabelle
Gatti, Evelina
Granucci, Francesca
Gündel, Michaela
Kramer, Matthijs
Kuka, Mirela
Lanyi, Arpad
Melief, Cornelis JM
van Montfoort, Nadine
Ostuni, Renato
Pierre, Philippe
Popovici, Razvan
Rajnavolgyi, Eva
Schierer, Stephan
Schuler, Gerold
Soumelis, Vassili
Splendiani, Andrea
Stefanini, Irene
Torcia, Maria G
Zanoni, Ivan
Zollinger, Raphael
Figdor, Carl G
Austyn, Jonathan M
author_facet Cavalieri, Duccio
Rivero, Damariz
Beltrame, Luca
Buschow, Sonja I
Calura, Enrica
Rizzetto, Lisa
Gessani, Sandra
Gauzzi, Maria C
Reith, Walter
Baur, Andreas
Bonaiuti, Roberto
Brandizi, Marco
De Filippo, Carlotta
D'Oro, Ugo
Draghici, Sorin
Dunand-Sauthier, Isabelle
Gatti, Evelina
Granucci, Francesca
Gündel, Michaela
Kramer, Matthijs
Kuka, Mirela
Lanyi, Arpad
Melief, Cornelis JM
van Montfoort, Nadine
Ostuni, Renato
Pierre, Philippe
Popovici, Razvan
Rajnavolgyi, Eva
Schierer, Stephan
Schuler, Gerold
Soumelis, Vassili
Splendiani, Andrea
Stefanini, Irene
Torcia, Maria G
Zanoni, Ivan
Zollinger, Raphael
Figdor, Carl G
Austyn, Jonathan M
author_sort Cavalieri, Duccio
collection PubMed
description BACKGROUND: The advent of Systems Biology has been accompanied by the blooming of pathway databases. Currently pathways are defined generically with respect to the organ or cell type where a reaction takes place. The cell type specificity of the reactions is the foundation of immunological research, and capturing this specificity is of paramount importance when using pathway-based analyses to decipher complex immunological datasets. Here, we present DC-ATLAS, a novel and versatile resource for the interpretation of high-throughput data generated perturbing the signaling network of dendritic cells (DCs). RESULTS: Pathways are annotated using a novel data model, the Biological Connection Markup Language (BCML), a SBGN-compliant data format developed to store the large amount of information collected. The application of DC-ATLAS to pathway-based analysis of the transcriptional program of DCs stimulated with agonists of the toll-like receptor family allows an integrated description of the flow of information from the cellular sensors to the functional outcome, capturing the temporal series of activation events by grouping sets of reactions that occur at different time points in well-defined functional modules. CONCLUSIONS: The initiative significantly improves our understanding of DC biology and regulatory networks. Developing a systems biology approach for immune system holds the promise of translating knowledge on the immune system into more successful immunotherapy strategies.
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spelling pubmed-30008362010-12-11 DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells Cavalieri, Duccio Rivero, Damariz Beltrame, Luca Buschow, Sonja I Calura, Enrica Rizzetto, Lisa Gessani, Sandra Gauzzi, Maria C Reith, Walter Baur, Andreas Bonaiuti, Roberto Brandizi, Marco De Filippo, Carlotta D'Oro, Ugo Draghici, Sorin Dunand-Sauthier, Isabelle Gatti, Evelina Granucci, Francesca Gündel, Michaela Kramer, Matthijs Kuka, Mirela Lanyi, Arpad Melief, Cornelis JM van Montfoort, Nadine Ostuni, Renato Pierre, Philippe Popovici, Razvan Rajnavolgyi, Eva Schierer, Stephan Schuler, Gerold Soumelis, Vassili Splendiani, Andrea Stefanini, Irene Torcia, Maria G Zanoni, Ivan Zollinger, Raphael Figdor, Carl G Austyn, Jonathan M Immunome Res Research BACKGROUND: The advent of Systems Biology has been accompanied by the blooming of pathway databases. Currently pathways are defined generically with respect to the organ or cell type where a reaction takes place. The cell type specificity of the reactions is the foundation of immunological research, and capturing this specificity is of paramount importance when using pathway-based analyses to decipher complex immunological datasets. Here, we present DC-ATLAS, a novel and versatile resource for the interpretation of high-throughput data generated perturbing the signaling network of dendritic cells (DCs). RESULTS: Pathways are annotated using a novel data model, the Biological Connection Markup Language (BCML), a SBGN-compliant data format developed to store the large amount of information collected. The application of DC-ATLAS to pathway-based analysis of the transcriptional program of DCs stimulated with agonists of the toll-like receptor family allows an integrated description of the flow of information from the cellular sensors to the functional outcome, capturing the temporal series of activation events by grouping sets of reactions that occur at different time points in well-defined functional modules. CONCLUSIONS: The initiative significantly improves our understanding of DC biology and regulatory networks. Developing a systems biology approach for immune system holds the promise of translating knowledge on the immune system into more successful immunotherapy strategies. BioMed Central 2010-11-19 /pmc/articles/PMC3000836/ /pubmed/21092113 http://dx.doi.org/10.1186/1745-7580-6-10 Text en Copyright ©2010 Cavalieri et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Cavalieri, Duccio
Rivero, Damariz
Beltrame, Luca
Buschow, Sonja I
Calura, Enrica
Rizzetto, Lisa
Gessani, Sandra
Gauzzi, Maria C
Reith, Walter
Baur, Andreas
Bonaiuti, Roberto
Brandizi, Marco
De Filippo, Carlotta
D'Oro, Ugo
Draghici, Sorin
Dunand-Sauthier, Isabelle
Gatti, Evelina
Granucci, Francesca
Gündel, Michaela
Kramer, Matthijs
Kuka, Mirela
Lanyi, Arpad
Melief, Cornelis JM
van Montfoort, Nadine
Ostuni, Renato
Pierre, Philippe
Popovici, Razvan
Rajnavolgyi, Eva
Schierer, Stephan
Schuler, Gerold
Soumelis, Vassili
Splendiani, Andrea
Stefanini, Irene
Torcia, Maria G
Zanoni, Ivan
Zollinger, Raphael
Figdor, Carl G
Austyn, Jonathan M
DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
title DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
title_full DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
title_fullStr DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
title_full_unstemmed DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
title_short DC-ATLAS: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
title_sort dc-atlas: a systems biology resource to dissect receptor specific signal transduction in dendritic cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3000836/
https://www.ncbi.nlm.nih.gov/pubmed/21092113
http://dx.doi.org/10.1186/1745-7580-6-10
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