Cargando…

Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia

BACKGROUND: To elucidate the genes involved in the neoplastic transformation of B cells, global gene expression profiles were generated using Affymetrix U74Av2 microarrays, containing 12,488 genes, for four different groups of mouse B-cell lymphomas and six subtypes of pristane-induced mouse plasma...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Eun Sung, Shaughnessy, John D, Gupta, Shalu, Wang, Hongyang, Lee, Ju-Seog, Woo, Hyun Goo, Zhan, Fenghuang, Owens, James D, Potter, Michael, Janz, Siegfried, Mushinski, J Frederic
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2040348/
https://www.ncbi.nlm.nih.gov/pubmed/17764563
http://dx.doi.org/10.1186/1471-2164-8-302
_version_ 1782137088199622656
author Park, Eun Sung
Shaughnessy, John D
Gupta, Shalu
Wang, Hongyang
Lee, Ju-Seog
Woo, Hyun Goo
Zhan, Fenghuang
Owens, James D
Potter, Michael
Janz, Siegfried
Mushinski, J Frederic
author_facet Park, Eun Sung
Shaughnessy, John D
Gupta, Shalu
Wang, Hongyang
Lee, Ju-Seog
Woo, Hyun Goo
Zhan, Fenghuang
Owens, James D
Potter, Michael
Janz, Siegfried
Mushinski, J Frederic
author_sort Park, Eun Sung
collection PubMed
description BACKGROUND: To elucidate the genes involved in the neoplastic transformation of B cells, global gene expression profiles were generated using Affymetrix U74Av2 microarrays, containing 12,488 genes, for four different groups of mouse B-cell lymphomas and six subtypes of pristane-induced mouse plasma cell tumors, three of which developed much earlier than the others. RESULTS: Unsupervised hierarchical cluster analysis exhibited two main sub-clusters of samples: a B-cell lymphoma cluster and a plasma cell tumor cluster with subclusters reflecting mechanism of induction. This report represents the first step in using global gene expression to investigate molecular signatures related to the role of cooperating oncogenes in a model of Myc-induced carcinogenesis. Within a single subgroup, e.g., ABPCs, plasma cell tumors that contained typical T(12;15) chromosomal translocations did not display gene expression patterns distinct from those with variant T(6;15) translocations, in which the breakpoint was in the Pvt-1 locus, 230 kb 3' of c-Myc, suggesting that c-Myc activation was the initiating factor in both. When integrated with previously published Affymetrix array data from human multiple myelomas, the IL-6-transgenic subset of mouse plasma cell tumors clustered more closely with MM1 subsets of human myelomas, slow-appearing plasma cell tumors clustered together with MM2, while plasma cell tumors accelerated by v-Abl clustered with the more aggressive MM3-MM4 myeloma subsets. Slow-appearing plasma cell tumors expressed Socs1 and Socs2 but v-Abl-accelerated plasma cell tumors expressed 4–5 times as much. Both v-Abl-accelerated and non-v-Abl-associated tumors exhibited phosphorylated STAT 1 and 3, but only v-Abl-accelerated plasma cell tumors lost viability and STAT 1 and 3 phosphorylation when cultured in the presence of the v-Abl kinase inhibitor, STI-571. These data suggest that the Jak/Stat pathway was critical in the transformation acceleration by v-Abl and that v-Abl activity remained essential throughout the life of the tumors, not just in their acceleration. A different pathway appears to predominate in the more slowly arising plasma cell tumors. CONCLUSION: Gene expression profiling differentiates not only B-cell lymphomas from plasma cell tumors but also distinguishes slow from accelerated plasma cell tumors. These data and those obtained from the sensitivity of v-Abl-accelerated plasma cell tumors and their phosphorylated STAT proteins indicate that these similar tumors utilize different signaling pathways but share a common initiating genetic lesion, a c-Myc-activating chromosome translocation.
format Text
id pubmed-2040348
institution National Center for Biotechnology Information
language English
publishDate 2007
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-20403482007-10-24 Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia Park, Eun Sung Shaughnessy, John D Gupta, Shalu Wang, Hongyang Lee, Ju-Seog Woo, Hyun Goo Zhan, Fenghuang Owens, James D Potter, Michael Janz, Siegfried Mushinski, J Frederic BMC Genomics Research Article BACKGROUND: To elucidate the genes involved in the neoplastic transformation of B cells, global gene expression profiles were generated using Affymetrix U74Av2 microarrays, containing 12,488 genes, for four different groups of mouse B-cell lymphomas and six subtypes of pristane-induced mouse plasma cell tumors, three of which developed much earlier than the others. RESULTS: Unsupervised hierarchical cluster analysis exhibited two main sub-clusters of samples: a B-cell lymphoma cluster and a plasma cell tumor cluster with subclusters reflecting mechanism of induction. This report represents the first step in using global gene expression to investigate molecular signatures related to the role of cooperating oncogenes in a model of Myc-induced carcinogenesis. Within a single subgroup, e.g., ABPCs, plasma cell tumors that contained typical T(12;15) chromosomal translocations did not display gene expression patterns distinct from those with variant T(6;15) translocations, in which the breakpoint was in the Pvt-1 locus, 230 kb 3' of c-Myc, suggesting that c-Myc activation was the initiating factor in both. When integrated with previously published Affymetrix array data from human multiple myelomas, the IL-6-transgenic subset of mouse plasma cell tumors clustered more closely with MM1 subsets of human myelomas, slow-appearing plasma cell tumors clustered together with MM2, while plasma cell tumors accelerated by v-Abl clustered with the more aggressive MM3-MM4 myeloma subsets. Slow-appearing plasma cell tumors expressed Socs1 and Socs2 but v-Abl-accelerated plasma cell tumors expressed 4–5 times as much. Both v-Abl-accelerated and non-v-Abl-associated tumors exhibited phosphorylated STAT 1 and 3, but only v-Abl-accelerated plasma cell tumors lost viability and STAT 1 and 3 phosphorylation when cultured in the presence of the v-Abl kinase inhibitor, STI-571. These data suggest that the Jak/Stat pathway was critical in the transformation acceleration by v-Abl and that v-Abl activity remained essential throughout the life of the tumors, not just in their acceleration. A different pathway appears to predominate in the more slowly arising plasma cell tumors. CONCLUSION: Gene expression profiling differentiates not only B-cell lymphomas from plasma cell tumors but also distinguishes slow from accelerated plasma cell tumors. These data and those obtained from the sensitivity of v-Abl-accelerated plasma cell tumors and their phosphorylated STAT proteins indicate that these similar tumors utilize different signaling pathways but share a common initiating genetic lesion, a c-Myc-activating chromosome translocation. BioMed Central 2007-08-31 /pmc/articles/PMC2040348/ /pubmed/17764563 http://dx.doi.org/10.1186/1471-2164-8-302 Text en Copyright © 2007 Park 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 Article
Park, Eun Sung
Shaughnessy, John D
Gupta, Shalu
Wang, Hongyang
Lee, Ju-Seog
Woo, Hyun Goo
Zhan, Fenghuang
Owens, James D
Potter, Michael
Janz, Siegfried
Mushinski, J Frederic
Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia
title Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia
title_full Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia
title_fullStr Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia
title_full_unstemmed Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia
title_short Gene expression profiling reveals different pathways related to Abl and other genes that cooperate with c-Myc in a model of plasma cell neoplasia
title_sort gene expression profiling reveals different pathways related to abl and other genes that cooperate with c-myc in a model of plasma cell neoplasia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2040348/
https://www.ncbi.nlm.nih.gov/pubmed/17764563
http://dx.doi.org/10.1186/1471-2164-8-302
work_keys_str_mv AT parkeunsung geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT shaughnessyjohnd geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT guptashalu geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT wanghongyang geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT leejuseog geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT woohyungoo geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT zhanfenghuang geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT owensjamesd geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT pottermichael geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT janzsiegfried geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia
AT mushinskijfrederic geneexpressionprofilingrevealsdifferentpathwaysrelatedtoablandothergenesthatcooperatewithcmycinamodelofplasmacellneoplasia