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Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells

BACKGROUND: Microarray experiments enable simultaneous measurement of the expression levels of virtually all transcripts present in cells, thereby providing a ‘molecular picture’ of the cell state. On the other hand, the genomic responses to a pharmacological or hormonal stimulus are dynamic molecul...

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Autores principales: Mutarelli, Margherita, Cicatiello, Luigi, Ferraro, Lorenzo, Grober, Olì MV, Ravo, Maria, Facchiano, Angelo M, Angelini, Claudia, Weisz, Alessandro
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2323661/
https://www.ncbi.nlm.nih.gov/pubmed/18387200
http://dx.doi.org/10.1186/1471-2105-9-S2-S12
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author Mutarelli, Margherita
Cicatiello, Luigi
Ferraro, Lorenzo
Grober, Olì MV
Ravo, Maria
Facchiano, Angelo M
Angelini, Claudia
Weisz, Alessandro
author_facet Mutarelli, Margherita
Cicatiello, Luigi
Ferraro, Lorenzo
Grober, Olì MV
Ravo, Maria
Facchiano, Angelo M
Angelini, Claudia
Weisz, Alessandro
author_sort Mutarelli, Margherita
collection PubMed
description BACKGROUND: Microarray experiments enable simultaneous measurement of the expression levels of virtually all transcripts present in cells, thereby providing a ‘molecular picture’ of the cell state. On the other hand, the genomic responses to a pharmacological or hormonal stimulus are dynamic molecular processes, where time influences gene activity and expression. The potential use of the statistical analysis of microarray data in time series has not been fully exploited so far, due to the fact that only few methods are available which take into proper account temporal relationships between samples. RESULTS: We compared here four different methods to analyze data derived from a time course mRNA expression profiling experiment which consisted in the study of the effects of estrogen on hormone-responsive human breast cancer cells. Gene expression was monitored with the innovative Illumina BeadArray platform, which includes an average of 30-40 replicates for each probe sequence randomly distributed on the chip surface. We present and discuss the results obtained by applying to these datasets different statistical methods for serial gene expression analysis. The influence of the normalization algorithm applied on data and of different parameter or threshold choices for the selection of differentially expressed transcripts has also been evaluated. In most cases, the selection was found fairly robust with respect to changes in parameters and type of normalization. We then identified which genes showed an expression profile significantly affected by the hormonal treatment over time. The final list of differentially expressed genes underwent cluster analysis of functional type, to identify groups of genes with similar regulation dynamics. CONCLUSIONS: Several methods for processing time series gene expression data are presented, including evaluation of benefits and drawbacks of the different methods applied. The resulting protocol for data analysis was applied to characterization of the gene expression changes induced by estrogen in human breast cancer ZR-75.1 cells over an entire cell cycle.
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spelling pubmed-23236612008-06-04 Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells Mutarelli, Margherita Cicatiello, Luigi Ferraro, Lorenzo Grober, Olì MV Ravo, Maria Facchiano, Angelo M Angelini, Claudia Weisz, Alessandro BMC Bioinformatics Research BACKGROUND: Microarray experiments enable simultaneous measurement of the expression levels of virtually all transcripts present in cells, thereby providing a ‘molecular picture’ of the cell state. On the other hand, the genomic responses to a pharmacological or hormonal stimulus are dynamic molecular processes, where time influences gene activity and expression. The potential use of the statistical analysis of microarray data in time series has not been fully exploited so far, due to the fact that only few methods are available which take into proper account temporal relationships between samples. RESULTS: We compared here four different methods to analyze data derived from a time course mRNA expression profiling experiment which consisted in the study of the effects of estrogen on hormone-responsive human breast cancer cells. Gene expression was monitored with the innovative Illumina BeadArray platform, which includes an average of 30-40 replicates for each probe sequence randomly distributed on the chip surface. We present and discuss the results obtained by applying to these datasets different statistical methods for serial gene expression analysis. The influence of the normalization algorithm applied on data and of different parameter or threshold choices for the selection of differentially expressed transcripts has also been evaluated. In most cases, the selection was found fairly robust with respect to changes in parameters and type of normalization. We then identified which genes showed an expression profile significantly affected by the hormonal treatment over time. The final list of differentially expressed genes underwent cluster analysis of functional type, to identify groups of genes with similar regulation dynamics. CONCLUSIONS: Several methods for processing time series gene expression data are presented, including evaluation of benefits and drawbacks of the different methods applied. The resulting protocol for data analysis was applied to characterization of the gene expression changes induced by estrogen in human breast cancer ZR-75.1 cells over an entire cell cycle. BioMed Central 2008-03-26 /pmc/articles/PMC2323661/ /pubmed/18387200 http://dx.doi.org/10.1186/1471-2105-9-S2-S12 Text en Copyright © 2008 Mutarelli 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
Mutarelli, Margherita
Cicatiello, Luigi
Ferraro, Lorenzo
Grober, Olì MV
Ravo, Maria
Facchiano, Angelo M
Angelini, Claudia
Weisz, Alessandro
Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
title Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
title_full Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
title_fullStr Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
title_full_unstemmed Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
title_short Time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
title_sort time-course analysis of genome-wide gene expression data from hormone-responsive human breast cancer cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2323661/
https://www.ncbi.nlm.nih.gov/pubmed/18387200
http://dx.doi.org/10.1186/1471-2105-9-S2-S12
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