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HOXA1-stimulated oncogenicity is mediated by selective upregulation of components of the p44/42 MAP kinase pathway in human mammary carcinoma cells

HOXA1-stimulated oncogenicity is mediated by selective upregulation of components of the p44/42 MAP kinase pathway in human mammary carcinoma cells
HOXA1-stimulated oncogenicity is mediated by selective upregulation of components of the p44/42 MAP kinase pathway in human mammary carcinoma cells
Expression of homeobox A1 (HOXA1) results in oncogenic transformation of immortalized human mammary epithelial cells with aggressive tumor formation in vivo. However, the mechanisms by which HOXA1 mediates oncogenic transformation is not well defined. To identify molecules that could potentially be involved in HOXA1-mediated oncogenic transformation, microarray analysis was utilized to characterize and compare the gene expression pattern in response to forced expression or depletion of HOXA1 in human mammary carcinoma cells. Gene expression profiling identified that genes involved in the p44/42 mitogen-activated protein (MAP) kinase activation pathway (GRB2, MAP kinase kinase (MEK1) and SDFR1) or p44/42 MAP kinase-regulated genes (IER3, EPAS1, PCNA and catalase) are downstream expression targets of HOXA1. Forced expression of HOXA1 increased GRB2 and MEK1 mRNA and protein expression and increased p44/42 MAP kinase phosphorylation, activity and Elk-1-mediated transcription. Use of a MEK1 inhibitor demonstrated that increased p44/42 MAP kinase activity is required for the HOXA1-mediated increase in cell proliferation, survival, oncogenicity and oncogenic transformation. Thus, modulation of the p44/42 MAP kinase pathway is one mechanism by which HOXA1 mediates oncogenic transformation of the human mammary epithelial cell.
female, growth, small interfering, expression, proteins, cluster analysis, gene, development, reverse transcriptase polymerase chain reaction, messenger, rna interference, gene expression, rna, cell line, genetics, cell proliferation, gene-expression, transfection, map kinase signaling system, metabolism, research, ets-domain protein elk-1, breast neoplasms, tumor, gene expression profiling, physiology, mitogen-activated protein kinase 3, analysis, activity, pathology, cell survival, transcription factors, homeodomain proteins, mitogen-activated protein kinase 1, humans, protein, human
0950-9232
3998-4008
Mohankumar, K.M.
d7c9e313-7c00-43cb-a82a-6a74038fcbda
Xu, X.Q.
ba760953-6076-4157-b097-dfebada6abab
Zhu, T.
bd5f8d02-47f0-4a55-a256-95455d1a0fb5
Kannan, N.
2100f6b7-2b16-41bd-babb-0f2a888a1d8e
Miller, L.D.
758b248d-7abc-4c3f-8b6a-d22e3b3cea0e
Liu, E.T.
7227394f-7908-4e83-8eeb-e5c797326dd9
Gluckman, P.D.
492295c0-ef71-4871-ad5a-771c98e1059a
Sukumar, S.
e7c6ae45-66de-498e-b586-3c0531270a41
Emerald, B.S.
36ae23a7-8650-4f3e-8af0-38413d49fdb3
Lobie, P.E.
d1d009de-75f1-4460-8478-e46b6104515f
Mohankumar, K.M.
d7c9e313-7c00-43cb-a82a-6a74038fcbda
Xu, X.Q.
ba760953-6076-4157-b097-dfebada6abab
Zhu, T.
bd5f8d02-47f0-4a55-a256-95455d1a0fb5
Kannan, N.
2100f6b7-2b16-41bd-babb-0f2a888a1d8e
Miller, L.D.
758b248d-7abc-4c3f-8b6a-d22e3b3cea0e
Liu, E.T.
7227394f-7908-4e83-8eeb-e5c797326dd9
Gluckman, P.D.
492295c0-ef71-4871-ad5a-771c98e1059a
Sukumar, S.
e7c6ae45-66de-498e-b586-3c0531270a41
Emerald, B.S.
36ae23a7-8650-4f3e-8af0-38413d49fdb3
Lobie, P.E.
d1d009de-75f1-4460-8478-e46b6104515f

Mohankumar, K.M., Xu, X.Q., Zhu, T., Kannan, N., Miller, L.D., Liu, E.T., Gluckman, P.D., Sukumar, S., Emerald, B.S. and Lobie, P.E. (2007) HOXA1-stimulated oncogenicity is mediated by selective upregulation of components of the p44/42 MAP kinase pathway in human mammary carcinoma cells. Oncogene, 26 (27), 3998-4008. (doi:10.1038/sj.onc.1210180).

Record type: Article

Abstract

Expression of homeobox A1 (HOXA1) results in oncogenic transformation of immortalized human mammary epithelial cells with aggressive tumor formation in vivo. However, the mechanisms by which HOXA1 mediates oncogenic transformation is not well defined. To identify molecules that could potentially be involved in HOXA1-mediated oncogenic transformation, microarray analysis was utilized to characterize and compare the gene expression pattern in response to forced expression or depletion of HOXA1 in human mammary carcinoma cells. Gene expression profiling identified that genes involved in the p44/42 mitogen-activated protein (MAP) kinase activation pathway (GRB2, MAP kinase kinase (MEK1) and SDFR1) or p44/42 MAP kinase-regulated genes (IER3, EPAS1, PCNA and catalase) are downstream expression targets of HOXA1. Forced expression of HOXA1 increased GRB2 and MEK1 mRNA and protein expression and increased p44/42 MAP kinase phosphorylation, activity and Elk-1-mediated transcription. Use of a MEK1 inhibitor demonstrated that increased p44/42 MAP kinase activity is required for the HOXA1-mediated increase in cell proliferation, survival, oncogenicity and oncogenic transformation. Thus, modulation of the p44/42 MAP kinase pathway is one mechanism by which HOXA1 mediates oncogenic transformation of the human mammary epithelial cell.

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More information

Published date: 2007
Keywords: female, growth, small interfering, expression, proteins, cluster analysis, gene, development, reverse transcriptase polymerase chain reaction, messenger, rna interference, gene expression, rna, cell line, genetics, cell proliferation, gene-expression, transfection, map kinase signaling system, metabolism, research, ets-domain protein elk-1, breast neoplasms, tumor, gene expression profiling, physiology, mitogen-activated protein kinase 3, analysis, activity, pathology, cell survival, transcription factors, homeodomain proteins, mitogen-activated protein kinase 1, humans, protein, human

Identifiers

Local EPrints ID: 61382
URI: http://eprints.soton.ac.uk/id/eprint/61382
ISSN: 0950-9232
PURE UUID: 098e8d43-c461-4d5b-9b64-42046d634249

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Date deposited: 09 Sep 2008
Last modified: 15 Mar 2024 11:26

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Contributors

Author: K.M. Mohankumar
Author: X.Q. Xu
Author: T. Zhu
Author: N. Kannan
Author: L.D. Miller
Author: E.T. Liu
Author: P.D. Gluckman
Author: S. Sukumar
Author: B.S. Emerald
Author: P.E. Lobie

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