Cargando…

A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis

BACKGROUND: Several lines of evidence suggest that transcription factors are involved in the pathogenesis of Multiple Sclerosis (MS) but complete mapping of the whole network has been elusive. One of the reasons is that there are several clinical subtypes of MS and transcription factors that may be...

Descripción completa

Detalles Bibliográficos
Autores principales: Riveros, Carlos, Mellor, Drew, Gandhi, Kaushal S., McKay, Fiona C., Cox, Mathew B., Berretta, Regina, Vaezpour, S. Yahya, Inostroza-Ponta, Mario, Broadley, Simon A., Heard, Robert N., Vucic, Stephen, Stewart, Graeme J., Williams, David W., Scott, Rodney J., Lechner-Scott, Jeanette, Booth, David R., Moscato, Pablo
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2995726/
https://www.ncbi.nlm.nih.gov/pubmed/21152067
http://dx.doi.org/10.1371/journal.pone.0014176
_version_ 1782193096583282688
author Riveros, Carlos
Mellor, Drew
Gandhi, Kaushal S.
McKay, Fiona C.
Cox, Mathew B.
Berretta, Regina
Vaezpour, S. Yahya
Inostroza-Ponta, Mario
Broadley, Simon A.
Heard, Robert N.
Vucic, Stephen
Stewart, Graeme J.
Williams, David W.
Scott, Rodney J.
Lechner-Scott, Jeanette
Booth, David R.
Moscato, Pablo
author_facet Riveros, Carlos
Mellor, Drew
Gandhi, Kaushal S.
McKay, Fiona C.
Cox, Mathew B.
Berretta, Regina
Vaezpour, S. Yahya
Inostroza-Ponta, Mario
Broadley, Simon A.
Heard, Robert N.
Vucic, Stephen
Stewart, Graeme J.
Williams, David W.
Scott, Rodney J.
Lechner-Scott, Jeanette
Booth, David R.
Moscato, Pablo
author_sort Riveros, Carlos
collection PubMed
description BACKGROUND: Several lines of evidence suggest that transcription factors are involved in the pathogenesis of Multiple Sclerosis (MS) but complete mapping of the whole network has been elusive. One of the reasons is that there are several clinical subtypes of MS and transcription factors that may be involved in one subtype may not be in others. We investigate the possibility that this network could be mapped using microarray technologies and contemporary bioinformatics methods on a dataset derived from whole blood in 99 untreated MS patients (36 Relapse Remitting MS, 43 Primary Progressive MS, and 20 Secondary Progressive MS) and 45 age-matched healthy controls. METHODOLOGY/PRINCIPAL FINDINGS: We have used two different analytical methodologies: a non-standard differential expression analysis and a differential co-expression analysis, which have converged on a significant number of regulatory motifs that are statistically overrepresented in genes that are either differentially expressed (or differentially co-expressed) in cases and controls (e.g., V$KROX_Q6, p-value <3.31E-6; V$CREBP1_Q2, p-value <9.93E-6, V$YY1_02, p-value <1.65E-5). CONCLUSIONS/SIGNIFICANCE: Our analysis uncovered a network of transcription factors that potentially dysregulate several genes in MS or one or more of its disease subtypes. The most significant transcription factor motifs were for the Early Growth Response EGR/KROX family, ATF2, YY1 (Yin and Yang 1), E2F-1/DP-1 and E2F-4/DP-2 heterodimers, SOX5, and CREB and ATF families. These transcription factors are involved in early T-lymphocyte specification and commitment as well as in oligodendrocyte dedifferentiation and development, both pathways that have significant biological plausibility in MS causation.
format Text
id pubmed-2995726
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-29957262010-12-10 A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis Riveros, Carlos Mellor, Drew Gandhi, Kaushal S. McKay, Fiona C. Cox, Mathew B. Berretta, Regina Vaezpour, S. Yahya Inostroza-Ponta, Mario Broadley, Simon A. Heard, Robert N. Vucic, Stephen Stewart, Graeme J. Williams, David W. Scott, Rodney J. Lechner-Scott, Jeanette Booth, David R. Moscato, Pablo PLoS One Research Article BACKGROUND: Several lines of evidence suggest that transcription factors are involved in the pathogenesis of Multiple Sclerosis (MS) but complete mapping of the whole network has been elusive. One of the reasons is that there are several clinical subtypes of MS and transcription factors that may be involved in one subtype may not be in others. We investigate the possibility that this network could be mapped using microarray technologies and contemporary bioinformatics methods on a dataset derived from whole blood in 99 untreated MS patients (36 Relapse Remitting MS, 43 Primary Progressive MS, and 20 Secondary Progressive MS) and 45 age-matched healthy controls. METHODOLOGY/PRINCIPAL FINDINGS: We have used two different analytical methodologies: a non-standard differential expression analysis and a differential co-expression analysis, which have converged on a significant number of regulatory motifs that are statistically overrepresented in genes that are either differentially expressed (or differentially co-expressed) in cases and controls (e.g., V$KROX_Q6, p-value <3.31E-6; V$CREBP1_Q2, p-value <9.93E-6, V$YY1_02, p-value <1.65E-5). CONCLUSIONS/SIGNIFICANCE: Our analysis uncovered a network of transcription factors that potentially dysregulate several genes in MS or one or more of its disease subtypes. The most significant transcription factor motifs were for the Early Growth Response EGR/KROX family, ATF2, YY1 (Yin and Yang 1), E2F-1/DP-1 and E2F-4/DP-2 heterodimers, SOX5, and CREB and ATF families. These transcription factors are involved in early T-lymphocyte specification and commitment as well as in oligodendrocyte dedifferentiation and development, both pathways that have significant biological plausibility in MS causation. Public Library of Science 2010-12-01 /pmc/articles/PMC2995726/ /pubmed/21152067 http://dx.doi.org/10.1371/journal.pone.0014176 Text en Riveros 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
Riveros, Carlos
Mellor, Drew
Gandhi, Kaushal S.
McKay, Fiona C.
Cox, Mathew B.
Berretta, Regina
Vaezpour, S. Yahya
Inostroza-Ponta, Mario
Broadley, Simon A.
Heard, Robert N.
Vucic, Stephen
Stewart, Graeme J.
Williams, David W.
Scott, Rodney J.
Lechner-Scott, Jeanette
Booth, David R.
Moscato, Pablo
A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis
title A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis
title_full A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis
title_fullStr A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis
title_full_unstemmed A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis
title_short A Transcription Factor Map as Revealed by a Genome-Wide Gene Expression Analysis of Whole-Blood mRNA Transcriptome in Multiple Sclerosis
title_sort transcription factor map as revealed by a genome-wide gene expression analysis of whole-blood mrna transcriptome in multiple sclerosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2995726/
https://www.ncbi.nlm.nih.gov/pubmed/21152067
http://dx.doi.org/10.1371/journal.pone.0014176
work_keys_str_mv AT riveroscarlos atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT mellordrew atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT gandhikaushals atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT mckayfionac atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT coxmathewb atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT berrettaregina atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT vaezpoursyahya atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT inostrozapontamario atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT broadleysimona atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT heardrobertn atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT vucicstephen atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT stewartgraemej atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT williamsdavidw atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT scottrodneyj atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT lechnerscottjeanette atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT boothdavidr atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT moscatopablo atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT atranscriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT riveroscarlos transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT mellordrew transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT gandhikaushals transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT mckayfionac transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT coxmathewb transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT berrettaregina transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT vaezpoursyahya transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT inostrozapontamario transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT broadleysimona transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT heardrobertn transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT vucicstephen transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT stewartgraemej transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT williamsdavidw transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT scottrodneyj transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT lechnerscottjeanette transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT boothdavidr transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT moscatopablo transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis
AT transcriptionfactormapasrevealedbyagenomewidegeneexpressionanalysisofwholebloodmrnatranscriptomeinmultiplesclerosis