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Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood

MOTIVATION: New antigen microarray technology enables parallel recording of antibody reactivities with hundreds of antigens. Such data affords system level analysis of the immune system's organization using methods and approaches from network theory. Here we measured the reactivity of 290 antig...

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Autores principales: Madi, Asaf, Kenett, Dror Y., Bransburg-Zabary, Sharron, Merbl, Yifat, Quintana, Francisco J., Tauber, Alfred I., Cohen, Irun R., Ben-Jacob, Eshel
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3050881/
https://www.ncbi.nlm.nih.gov/pubmed/21408156
http://dx.doi.org/10.1371/journal.pone.0017445
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author Madi, Asaf
Kenett, Dror Y.
Bransburg-Zabary, Sharron
Merbl, Yifat
Quintana, Francisco J.
Tauber, Alfred I.
Cohen, Irun R.
Ben-Jacob, Eshel
author_facet Madi, Asaf
Kenett, Dror Y.
Bransburg-Zabary, Sharron
Merbl, Yifat
Quintana, Francisco J.
Tauber, Alfred I.
Cohen, Irun R.
Ben-Jacob, Eshel
author_sort Madi, Asaf
collection PubMed
description MOTIVATION: New antigen microarray technology enables parallel recording of antibody reactivities with hundreds of antigens. Such data affords system level analysis of the immune system's organization using methods and approaches from network theory. Here we measured the reactivity of 290 antigens (for both the IgG and IgM isotypes) of 10 healthy mothers and their term newborns. We constructed antigen correlation networks (or immune networks) whose nodes are the antigens and the edges are the antigen-antigen reactivity correlations, and we also computed their corresponding minimum spanning trees (MST) – maximal information reduced sub-graphs. We quantify the network organization (topology) in terms of the network theory divergence rate measure and rank the antigen importance in the full antigen correlation networks by the eigen-value centrality measure. This analysis makes possible the characterization and comparison of the IgG and IgM immune networks at birth (newborns) and adulthood (mothers) in terms of topology and node importance. RESULTS: Comparison of the immune network topology at birth and adulthood revealed partial conservation of the IgG immune network topology, and significant reorganization of the IgM immune networks. Inspection of the antigen importance revealed some dominant (in terms of high centrality) antigens in the IgG and IgM networks at birth, which retain their importance at adulthood.
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spelling pubmed-30508812011-03-15 Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood Madi, Asaf Kenett, Dror Y. Bransburg-Zabary, Sharron Merbl, Yifat Quintana, Francisco J. Tauber, Alfred I. Cohen, Irun R. Ben-Jacob, Eshel PLoS One Research Article MOTIVATION: New antigen microarray technology enables parallel recording of antibody reactivities with hundreds of antigens. Such data affords system level analysis of the immune system's organization using methods and approaches from network theory. Here we measured the reactivity of 290 antigens (for both the IgG and IgM isotypes) of 10 healthy mothers and their term newborns. We constructed antigen correlation networks (or immune networks) whose nodes are the antigens and the edges are the antigen-antigen reactivity correlations, and we also computed their corresponding minimum spanning trees (MST) – maximal information reduced sub-graphs. We quantify the network organization (topology) in terms of the network theory divergence rate measure and rank the antigen importance in the full antigen correlation networks by the eigen-value centrality measure. This analysis makes possible the characterization and comparison of the IgG and IgM immune networks at birth (newborns) and adulthood (mothers) in terms of topology and node importance. RESULTS: Comparison of the immune network topology at birth and adulthood revealed partial conservation of the IgG immune network topology, and significant reorganization of the IgM immune networks. Inspection of the antigen importance revealed some dominant (in terms of high centrality) antigens in the IgG and IgM networks at birth, which retain their importance at adulthood. Public Library of Science 2011-03-08 /pmc/articles/PMC3050881/ /pubmed/21408156 http://dx.doi.org/10.1371/journal.pone.0017445 Text en Madi 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
Madi, Asaf
Kenett, Dror Y.
Bransburg-Zabary, Sharron
Merbl, Yifat
Quintana, Francisco J.
Tauber, Alfred I.
Cohen, Irun R.
Ben-Jacob, Eshel
Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood
title Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood
title_full Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood
title_fullStr Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood
title_full_unstemmed Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood
title_short Network Theory Analysis of Antibody-Antigen Reactivity Data: The Immune Trees at Birth and Adulthood
title_sort network theory analysis of antibody-antigen reactivity data: the immune trees at birth and adulthood
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3050881/
https://www.ncbi.nlm.nih.gov/pubmed/21408156
http://dx.doi.org/10.1371/journal.pone.0017445
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