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The functional landscape of mouse gene expression

BACKGROUND: Large-scale quantitative analysis of transcriptional co-expression has been used to dissect regulatory networks and to predict the functions of new genes discovered by genome sequencing in model organisms such as yeast. Although the idea that tissue-specific expression is indicative of g...

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Autores principales: Zhang, Wen, Morris, Quaid D, Chang, Richard, Shai, Ofer, Bakowski, Malina A, Mitsakakis, Nicholas, Mohammad, Naveed, Robinson, Mark D, Zirngibl, Ralph, Somogyi, Eszter, Laurin, Nancy, Eftekharpour, Eftekhar, Sat, Eric, Grigull, Jörg, Pan, Qun, Peng, Wen-Tao, Krogan, Nevan, Greenblatt, Jack, Fehlings, Michael, van der Kooy, Derek, Aubin, Jane, Bruneau, Benoit G, Rossant, Janet, Blencowe, Benjamin J, Frey, Brendan J, Hughes, Timothy R
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC549719/
https://www.ncbi.nlm.nih.gov/pubmed/15588312
http://dx.doi.org/10.1186/jbiol16
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author Zhang, Wen
Morris, Quaid D
Chang, Richard
Shai, Ofer
Bakowski, Malina A
Mitsakakis, Nicholas
Mohammad, Naveed
Robinson, Mark D
Zirngibl, Ralph
Somogyi, Eszter
Laurin, Nancy
Eftekharpour, Eftekhar
Sat, Eric
Grigull, Jörg
Pan, Qun
Peng, Wen-Tao
Krogan, Nevan
Greenblatt, Jack
Fehlings, Michael
van der Kooy, Derek
Aubin, Jane
Bruneau, Benoit G
Rossant, Janet
Blencowe, Benjamin J
Frey, Brendan J
Hughes, Timothy R
author_facet Zhang, Wen
Morris, Quaid D
Chang, Richard
Shai, Ofer
Bakowski, Malina A
Mitsakakis, Nicholas
Mohammad, Naveed
Robinson, Mark D
Zirngibl, Ralph
Somogyi, Eszter
Laurin, Nancy
Eftekharpour, Eftekhar
Sat, Eric
Grigull, Jörg
Pan, Qun
Peng, Wen-Tao
Krogan, Nevan
Greenblatt, Jack
Fehlings, Michael
van der Kooy, Derek
Aubin, Jane
Bruneau, Benoit G
Rossant, Janet
Blencowe, Benjamin J
Frey, Brendan J
Hughes, Timothy R
author_sort Zhang, Wen
collection PubMed
description BACKGROUND: Large-scale quantitative analysis of transcriptional co-expression has been used to dissect regulatory networks and to predict the functions of new genes discovered by genome sequencing in model organisms such as yeast. Although the idea that tissue-specific expression is indicative of gene function in mammals is widely accepted, it has not been objectively tested nor compared with the related but distinct strategy of correlating gene co-expression as a means to predict gene function. RESULTS: We generated microarray expression data for nearly 40,000 known and predicted mRNAs in 55 mouse tissues, using custom-built oligonucleotide arrays. We show that quantitative transcriptional co-expression is a powerful predictor of gene function. Hundreds of functional categories, as defined by Gene Ontology 'Biological Processes', are associated with characteristic expression patterns across all tissues, including categories that bear no overt relationship to the tissue of origin. In contrast, simple tissue-specific restriction of expression is a poor predictor of which genes are in which functional categories. As an example, the highly conserved mouse gene PWP1 is widely expressed across different tissues but is co-expressed with many RNA-processing genes; we show that the uncharacterized yeast homolog of PWP1 is required for rRNA biogenesis. CONCLUSIONS: We conclude that 'functional genomics' strategies based on quantitative transcriptional co-expression will be as fruitful in mammals as they have been in simpler organisms, and that transcriptional control of mammalian physiology is more modular than is generally appreciated. Our data and analyses provide a public resource for mammalian functional genomics.
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spelling pubmed-5497192005-02-26 The functional landscape of mouse gene expression Zhang, Wen Morris, Quaid D Chang, Richard Shai, Ofer Bakowski, Malina A Mitsakakis, Nicholas Mohammad, Naveed Robinson, Mark D Zirngibl, Ralph Somogyi, Eszter Laurin, Nancy Eftekharpour, Eftekhar Sat, Eric Grigull, Jörg Pan, Qun Peng, Wen-Tao Krogan, Nevan Greenblatt, Jack Fehlings, Michael van der Kooy, Derek Aubin, Jane Bruneau, Benoit G Rossant, Janet Blencowe, Benjamin J Frey, Brendan J Hughes, Timothy R J Biol Research Article BACKGROUND: Large-scale quantitative analysis of transcriptional co-expression has been used to dissect regulatory networks and to predict the functions of new genes discovered by genome sequencing in model organisms such as yeast. Although the idea that tissue-specific expression is indicative of gene function in mammals is widely accepted, it has not been objectively tested nor compared with the related but distinct strategy of correlating gene co-expression as a means to predict gene function. RESULTS: We generated microarray expression data for nearly 40,000 known and predicted mRNAs in 55 mouse tissues, using custom-built oligonucleotide arrays. We show that quantitative transcriptional co-expression is a powerful predictor of gene function. Hundreds of functional categories, as defined by Gene Ontology 'Biological Processes', are associated with characteristic expression patterns across all tissues, including categories that bear no overt relationship to the tissue of origin. In contrast, simple tissue-specific restriction of expression is a poor predictor of which genes are in which functional categories. As an example, the highly conserved mouse gene PWP1 is widely expressed across different tissues but is co-expressed with many RNA-processing genes; we show that the uncharacterized yeast homolog of PWP1 is required for rRNA biogenesis. CONCLUSIONS: We conclude that 'functional genomics' strategies based on quantitative transcriptional co-expression will be as fruitful in mammals as they have been in simpler organisms, and that transcriptional control of mammalian physiology is more modular than is generally appreciated. Our data and analyses provide a public resource for mammalian functional genomics. BioMed Central 2004 2004-12-06 /pmc/articles/PMC549719/ /pubmed/15588312 http://dx.doi.org/10.1186/jbiol16 Text en Copyright © 2004 Zhang et al.; licensee BioMed Central Ltd.
spellingShingle Research Article
Zhang, Wen
Morris, Quaid D
Chang, Richard
Shai, Ofer
Bakowski, Malina A
Mitsakakis, Nicholas
Mohammad, Naveed
Robinson, Mark D
Zirngibl, Ralph
Somogyi, Eszter
Laurin, Nancy
Eftekharpour, Eftekhar
Sat, Eric
Grigull, Jörg
Pan, Qun
Peng, Wen-Tao
Krogan, Nevan
Greenblatt, Jack
Fehlings, Michael
van der Kooy, Derek
Aubin, Jane
Bruneau, Benoit G
Rossant, Janet
Blencowe, Benjamin J
Frey, Brendan J
Hughes, Timothy R
The functional landscape of mouse gene expression
title The functional landscape of mouse gene expression
title_full The functional landscape of mouse gene expression
title_fullStr The functional landscape of mouse gene expression
title_full_unstemmed The functional landscape of mouse gene expression
title_short The functional landscape of mouse gene expression
title_sort functional landscape of mouse gene expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC549719/
https://www.ncbi.nlm.nih.gov/pubmed/15588312
http://dx.doi.org/10.1186/jbiol16
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