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Identification of a novel estrogen receptor-α variant and its upstream splicing regulator
Ohshiro, Kazufumi, Mudvari, Prakriti, Meng, Qing-Chang, , Sahin, Aysegul A., Fuqua, Suzanne A. W., Kumar, Rakesh
Published in
2010
PMID: 20304996
Volume: 24
   
Issue: 5
Pages: 914 - 922
Abstract
Alternative splicing of precursor mRNA is a fundamental mechanism to generate multiple proteins from a single gene. Although constitutive and alternative mRNA splicing is temporally and spatially regulated, deregulation of mRNA splicing could cause development, progression, and metastasis of tumors. Through yeast two-hybrid screening of a human breast cDNA library using estrogen receptor-α (ERα) as bait, we identified a novel nuclear receptor box containing full-length protein, nuclear protein E3-3 (NPE3-3). Our results revealed that NPE3-3 associates with not only ERα but also with splicing factors, serine/arginine-rich protein (SRp)-30c, SRp40, and splicing factor SC-35, suggesting that NPE3-3 is likely to be involved in regulation of mRNA splicing. Accordingly, transient expression of NPE3-3 in cells resulted in expected splicing of the CD44 control minigene. We also discovered that NPE3-3-overexpressing clones produced a novel, previously unrecognized, alternatively spliced variant of ERα (termed ERαV), which had a molecular size of 37 kDa composed of only exons 1, 2, 7, and 8. ERαV was expressed and sequestered in the cytoplasm in MCF-7 cells stably overexpressing NPE3-3, suggesting its involvement in nongenomic hormone signaling. NPE3-3 clones exhibited up-regulation of ERK1/2 signaling, cyclin D1, and cathepsin D and enhanced tumor cell proliferation, migration, and tumorigenicity. Moreover, direct expression of the ERαV in breast cancer cells stimulated ERK1/2 up-regulation and cyclin D1 expression. We found that ERαV physically interacted with MAPK kinase (MEK)-1/2, and thus, an ERαV and MEK1/2 complex could lead to the activation of the ERK1/2 pathway. Interestingly, NPE3-3 was up-regulated in human breast tumors. These findings revealed a role for NPE3-3 in alternative splicing and suggest that ERα is a physiological target of NPE3-3, leading to a constitutive nongenomic signaling pathway in breast cancer cells. Copyright © 2010 by The Endocrine Society.
About the journal
JournalMolecular Endocrinology
ISSN08888809
Open AccessYes
Concepts (52)
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    CATHEPSIN D
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    Complementary dna
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    Cyclin d1
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    ESTROGEN RECEPTOR ALPHA
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    MITOGEN ACTIVATED PROTEIN KINASE 1
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    MITOGEN ACTIVATED PROTEIN KINASE 3
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    MITOGEN ACTIVATED PROTEIN KINASE KINASE 1
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    MITOGEN ACTIVATED PROTEIN KINASE KINASE 2
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    Nuclear protein
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    Regulator protein
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    ALTERNATIVE RNA SPLICING
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    Animal experiment
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    Animal model
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    Animal tissue
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    Article
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    Carcinogenicity
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    Cell migration
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    Cell proliferation
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    Controlled study
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    DNA LIBRARY
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    Human
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    Human cell
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    Molecular cloning
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    Mouse
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    Nonhuman
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    Priority journal
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    Protein expression
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    RNA SPLICING
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    Signal transduction
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    TWO HYBRID SYSTEM
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    Animals
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    Blotting, western
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    Breast neoplasms
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    CATHEPSIN D
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    Cell line
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    Cell line, tumor
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    Cell movement
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    CERCOPITHECUS AETHIOPS
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    Chromatography, liquid
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    COS CELLS
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    ESTROGEN RECEPTOR ALPHA
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    Humans
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    Immunoprecipitation
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    Mice
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    Microscopy, confocal
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    MITOGEN-ACTIVATED PROTEIN KINASE 1
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    MITOGEN-ACTIVATED PROTEIN KINASE 3
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    Nuclear proteins
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    Protein binding
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    RNA SPLICING
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    Tandem mass spectrometry
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    TWO-HYBRID SYSTEM TECHNIQUES