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Submitted on February 7, 2005
Accepted on June 13, 2005
William Stuart, Burns and Allen Research Institute and Division of Endocrinology, Diabetes and Metabolism, Cedars-Sinai Medical Center; Department of Pathology, Cedars-Sinai Medical Center, David Geffen School of Medicine at UCLA, 8700 Beverly Blvd, B-131, Los Angeles, California 90048, USA; Department of Surgery, The University of Cincinnati College of Medicine, Cincinnati, OH 45267; Department of Pathology, University of Alabama at Birmingham, AL 35294
* To whom correspondence should be addressed. E-mail: chenh{at}cshs.org.
Estrogen unresponsiveness among primate species can result from overexpression of a heterogeneous nuclear ribonucleoprotein (hnRNP) which competes with estrogen receptor (ER) for binding to the estrogen-response element (ERE). This hnRNP has been coined the "ERE-binding protein" (ERE-BP). The ERE-BP is a member of the hnRNP C-like subfamily of hnRNPs, traditionally considered to be single-strand RNA binding proteins designed for the stabilization and handling of pre-mRNA. To verify in vivo the dominant-negative-actions of the ERE-BP to inhibit ER-ERE-directed transactivation and to avoid the potential for lethality from global overexpression of an hnRNP, we generated transgenic mice that overexpressed ERE-BP in breast tissue under the control of a whey acidic protein gene promoter. Graded overexpression of ERE-BP in transgenic mice was established. Founders were viable and fertile. Female transgenics in all lines gave birth to pups, but their ability to nurse was dependent on the level of ERE-BP expression in breast; high-ERE-BP expressors were unable to lactate. A gradient of impaired breast pheno(histo)type, from near normal to failed ductal development and lactational capacity, correlated with the relative level of transgene expression. ERE-BP, expressed either endogenously as a transgene or after transfection, co-localized with ER
in the nucleus of target cells. This work confirms that tissue-targeted overexpression of the ERE-BP can effectively block estrogen-ER
-ERE-directed action in vivo.
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H. Chen, M. Hewison, and J. S. Adams Control of Estradiol-Directed Gene Transactivation by an Intracellular Estrogen-Binding Protein and an Estrogen Response Element-Binding Protein Mol. Endocrinol., March 1, 2008; 22(3): 559 - 569. [Abstract] [Full Text] [PDF] |
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