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An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis

Striking individual differences in severity of group A streptococcal (GAS) sepsis have been noted, even among patients infected with the same bacterial strain. We had provided evidence that HLA class II allelic variation contributes significantly to differences in systemic disease severity by modula...

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Autores principales: Abdeltawab, Nourtan F., Aziz, Ramy K., Kansal, Rita, Rowe, Sarah L., Su, Yin, Gardner, Lidia, Brannen, Charity, Nooh, Mohammed M., Attia, Ramy R., Abdelsamed, Hossam A., Taylor, William L., Lu, Lu, Williams, Robert W., Kotb, Malak
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277464/
https://www.ncbi.nlm.nih.gov/pubmed/18421376
http://dx.doi.org/10.1371/journal.ppat.1000042
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author Abdeltawab, Nourtan F.
Aziz, Ramy K.
Kansal, Rita
Rowe, Sarah L.
Su, Yin
Gardner, Lidia
Brannen, Charity
Nooh, Mohammed M.
Attia, Ramy R.
Abdelsamed, Hossam A.
Taylor, William L.
Lu, Lu
Williams, Robert W.
Kotb, Malak
author_facet Abdeltawab, Nourtan F.
Aziz, Ramy K.
Kansal, Rita
Rowe, Sarah L.
Su, Yin
Gardner, Lidia
Brannen, Charity
Nooh, Mohammed M.
Attia, Ramy R.
Abdelsamed, Hossam A.
Taylor, William L.
Lu, Lu
Williams, Robert W.
Kotb, Malak
author_sort Abdeltawab, Nourtan F.
collection PubMed
description Striking individual differences in severity of group A streptococcal (GAS) sepsis have been noted, even among patients infected with the same bacterial strain. We had provided evidence that HLA class II allelic variation contributes significantly to differences in systemic disease severity by modulating host responses to streptococcal superantigens. Inasmuch as the bacteria produce additional virulence factors that participate in the pathogenesis of this complex disease, we sought to identify additional gene networks modulating GAS sepsis. Accordingly, we applied a systems genetics approach using a panel of advanced recombinant inbred mice. By analyzing disease phenotypes in the context of mice genotypes we identified a highly significant quantitative trait locus (QTL) on Chromosome 2 between 22 and 34 Mb that strongly predicts disease severity, accounting for 25%–30% of variance. This QTL harbors several polymorphic genes known to regulate immune responses to bacterial infections. We evaluated candidate genes within this QTL using multiple parameters that included linkage, gene ontology, variation in gene expression, cocitation networks, and biological relevance, and identified interleukin1 alpha and prostaglandin E synthases pathways as key networks involved in modulating GAS sepsis severity. The association of GAS sepsis with multiple pathways underscores the complexity of traits modulating GAS sepsis and provides a powerful approach for analyzing interactive traits affecting outcomes of other infectious diseases.
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spelling pubmed-22774642008-04-18 An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis Abdeltawab, Nourtan F. Aziz, Ramy K. Kansal, Rita Rowe, Sarah L. Su, Yin Gardner, Lidia Brannen, Charity Nooh, Mohammed M. Attia, Ramy R. Abdelsamed, Hossam A. Taylor, William L. Lu, Lu Williams, Robert W. Kotb, Malak PLoS Pathog Research Article Striking individual differences in severity of group A streptococcal (GAS) sepsis have been noted, even among patients infected with the same bacterial strain. We had provided evidence that HLA class II allelic variation contributes significantly to differences in systemic disease severity by modulating host responses to streptococcal superantigens. Inasmuch as the bacteria produce additional virulence factors that participate in the pathogenesis of this complex disease, we sought to identify additional gene networks modulating GAS sepsis. Accordingly, we applied a systems genetics approach using a panel of advanced recombinant inbred mice. By analyzing disease phenotypes in the context of mice genotypes we identified a highly significant quantitative trait locus (QTL) on Chromosome 2 between 22 and 34 Mb that strongly predicts disease severity, accounting for 25%–30% of variance. This QTL harbors several polymorphic genes known to regulate immune responses to bacterial infections. We evaluated candidate genes within this QTL using multiple parameters that included linkage, gene ontology, variation in gene expression, cocitation networks, and biological relevance, and identified interleukin1 alpha and prostaglandin E synthases pathways as key networks involved in modulating GAS sepsis severity. The association of GAS sepsis with multiple pathways underscores the complexity of traits modulating GAS sepsis and provides a powerful approach for analyzing interactive traits affecting outcomes of other infectious diseases. Public Library of Science 2008-04-18 /pmc/articles/PMC2277464/ /pubmed/18421376 http://dx.doi.org/10.1371/journal.ppat.1000042 Text en This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Abdeltawab, Nourtan F.
Aziz, Ramy K.
Kansal, Rita
Rowe, Sarah L.
Su, Yin
Gardner, Lidia
Brannen, Charity
Nooh, Mohammed M.
Attia, Ramy R.
Abdelsamed, Hossam A.
Taylor, William L.
Lu, Lu
Williams, Robert W.
Kotb, Malak
An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis
title An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis
title_full An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis
title_fullStr An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis
title_full_unstemmed An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis
title_short An Unbiased Systems Genetics Approach to Mapping Genetic Loci Modulating Susceptibility to Severe Streptococcal Sepsis
title_sort unbiased systems genetics approach to mapping genetic loci modulating susceptibility to severe streptococcal sepsis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277464/
https://www.ncbi.nlm.nih.gov/pubmed/18421376
http://dx.doi.org/10.1371/journal.ppat.1000042
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