A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells

<p>Abstract</p> <p>Background</p> <p>Malignant cells in tumours of B-cell origin account for 0.1% to 98% of the total cell content, depending on disease entity. Recently, gene expression profiles (GEPs) of B-cell lymphomas based on microarray technologies have contribut...

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Main Authors: Kloster Maria, Bilgrau Anders, Rodrigo-Domingo Maria, Bergkvist Kim, Schmitz Alexander, Sønderkær Mads, Bødker Julie, Falgreen Steffen, Nyegaard Mette, Johnsen Hans, Nielsen Kåre, Dybkaer Karen, Bøgsted Martin
Format: Article
Language:English
Published: BMC 2012-11-01
Series:BMC Genomics
Subjects:
Online Access:http://www.biomedcentral.com/1471-2164/13/596
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spelling doaj-589beb8b67864ff8a7491f381ac296c32020-11-25T01:30:52ZengBMCBMC Genomics1471-21642012-11-0113159610.1186/1471-2164-13-596A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cellsKloster MariaBilgrau AndersRodrigo-Domingo MariaBergkvist KimSchmitz AlexanderSønderkær MadsBødker JulieFalgreen SteffenNyegaard MetteJohnsen HansNielsen KåreDybkaer KarenBøgsted Martin<p>Abstract</p> <p>Background</p> <p>Malignant cells in tumours of B-cell origin account for 0.1% to 98% of the total cell content, depending on disease entity. Recently, gene expression profiles (GEPs) of B-cell lymphomas based on microarray technologies have contributed significantly to improved sub-classification and diagnostics. However, the varying degrees of malignant B-cell frequencies in analysed samples influence the interpretation of the GEPs. Based on emerging next-generation sequencing technologies (NGS) like tag sequencing (tag-seq) for GEP, it is expected that the detection of mRNA transcripts from malignant B-cells can be supplemented. This study provides a quantitative assessment and comparison of the ability of microarrays and tag-seq to detect mRNA transcripts from malignant B-cells. A model system was established by eight serial dilutions of the malignant B-cell lymphoma cell line, OCI-Ly8, into the embryonic kidney cell line, HEK293, prior to parallel analysis by exon microarrays and tag-seq.</p> <p>Results</p> <p>We identified 123 and 117 differentially expressed genes between pure OCI-Ly8 and HEK293 cells by exon microarray and tag-seq, respectively. There were thirty genes in common, and of those, most were B-cell specific. Hierarchical clustering from all dilutions based on the differentially expressed genes showed that neither technology could distinguish between samples with less than 1% malignant B-cells from non-B-cells. A novel statistical concept was developed to assess the ability to detect single genes for both technologies, and used to demonstrate an inverse proportional relationship with the sample purity. Of the 30 common genes, the detection capability of a representative set of three B-cell specific genes - <it>CD74</it>, <it>HLA</it>-<it>DRA</it>, and <it>BCL6</it> - was analysed. It was noticed that at least 5%, 13% and 22% sample purity respectively was required for detection of the three genes by exon microarray whereas at least 2%, 4% and 51% percent sample purity of malignant B-cells were required for tag-seq detection.</p> <p>Conclusion</p> <p>A sample purity-dependent loss of the ability to detect genes for both technologies was demonstrated. Taq-seq, in comparison to exon microarray, required slightly less malignant B-cells in the samples analysed in order to detect the two most abundantly expressed of the selected genes. The results show that malignant cell frequency is an important variable, with fundamental impact when interpreting GEPs from both technologies.</p> http://www.biomedcentral.com/1471-2164/13/596Exon microarrayTag-seqGene expressionDetection limitSample purity
collection DOAJ
language English
format Article
sources DOAJ
author Kloster Maria
Bilgrau Anders
Rodrigo-Domingo Maria
Bergkvist Kim
Schmitz Alexander
Sønderkær Mads
Bødker Julie
Falgreen Steffen
Nyegaard Mette
Johnsen Hans
Nielsen Kåre
Dybkaer Karen
Bøgsted Martin
spellingShingle Kloster Maria
Bilgrau Anders
Rodrigo-Domingo Maria
Bergkvist Kim
Schmitz Alexander
Sønderkær Mads
Bødker Julie
Falgreen Steffen
Nyegaard Mette
Johnsen Hans
Nielsen Kåre
Dybkaer Karen
Bøgsted Martin
A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells
BMC Genomics
Exon microarray
Tag-seq
Gene expression
Detection limit
Sample purity
author_facet Kloster Maria
Bilgrau Anders
Rodrigo-Domingo Maria
Bergkvist Kim
Schmitz Alexander
Sønderkær Mads
Bødker Julie
Falgreen Steffen
Nyegaard Mette
Johnsen Hans
Nielsen Kåre
Dybkaer Karen
Bøgsted Martin
author_sort Kloster Maria
title A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells
title_short A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells
title_full A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells
title_fullStr A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells
title_full_unstemmed A model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant B-cells
title_sort model system for assessing and comparing the ability of exon microarray and tag sequencing to detect genes specific for malignant b-cells
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2012-11-01
description <p>Abstract</p> <p>Background</p> <p>Malignant cells in tumours of B-cell origin account for 0.1% to 98% of the total cell content, depending on disease entity. Recently, gene expression profiles (GEPs) of B-cell lymphomas based on microarray technologies have contributed significantly to improved sub-classification and diagnostics. However, the varying degrees of malignant B-cell frequencies in analysed samples influence the interpretation of the GEPs. Based on emerging next-generation sequencing technologies (NGS) like tag sequencing (tag-seq) for GEP, it is expected that the detection of mRNA transcripts from malignant B-cells can be supplemented. This study provides a quantitative assessment and comparison of the ability of microarrays and tag-seq to detect mRNA transcripts from malignant B-cells. A model system was established by eight serial dilutions of the malignant B-cell lymphoma cell line, OCI-Ly8, into the embryonic kidney cell line, HEK293, prior to parallel analysis by exon microarrays and tag-seq.</p> <p>Results</p> <p>We identified 123 and 117 differentially expressed genes between pure OCI-Ly8 and HEK293 cells by exon microarray and tag-seq, respectively. There were thirty genes in common, and of those, most were B-cell specific. Hierarchical clustering from all dilutions based on the differentially expressed genes showed that neither technology could distinguish between samples with less than 1% malignant B-cells from non-B-cells. A novel statistical concept was developed to assess the ability to detect single genes for both technologies, and used to demonstrate an inverse proportional relationship with the sample purity. Of the 30 common genes, the detection capability of a representative set of three B-cell specific genes - <it>CD74</it>, <it>HLA</it>-<it>DRA</it>, and <it>BCL6</it> - was analysed. It was noticed that at least 5%, 13% and 22% sample purity respectively was required for detection of the three genes by exon microarray whereas at least 2%, 4% and 51% percent sample purity of malignant B-cells were required for tag-seq detection.</p> <p>Conclusion</p> <p>A sample purity-dependent loss of the ability to detect genes for both technologies was demonstrated. Taq-seq, in comparison to exon microarray, required slightly less malignant B-cells in the samples analysed in order to detect the two most abundantly expressed of the selected genes. The results show that malignant cell frequency is an important variable, with fundamental impact when interpreting GEPs from both technologies.</p>
topic Exon microarray
Tag-seq
Gene expression
Detection limit
Sample purity
url http://www.biomedcentral.com/1471-2164/13/596
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