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Updated: Jul 16, 2026

Prediction and Validation of Gene Regulatory Elements Activated During Retinoic Acid Induced Embryonic Stem Cell Differentiation
Published on: June 21, 2016
Differential cell-specific modulation of HOXA10 by estrogen and specificity protein 1 response elements
Ryan Martin1, Melissa B Taylor, Graciela Krikun
1Yale University School of Medicine, 333 Cedar Street, New Haven, CT 06520-8063, USA.
Context:
HOX genes are highly evolutionarily conserved regulators of embryonic development. HOXA10 also regulates differentiation of the adult reproductive tract and mammary gland in response to sex steroids.
Objective:
We recently identified two HOXA10 estrogen response elements (EREs). Here we demonstrate that estrogen-responsive HOXA10 expression is cell type specific.
Design And Setting:
We conducted an in vitro study at an academic medical center.
Main Outcome Measure:
Reporter assay, gel shift assays (electrophoretic mobility shift assay), and immunohistochemistry were done.
Results:
The HOXA10 EREs and a specificity protein 1 (Sp1) binding site differentially drive the cell-type-specific E2 response. In electrophoretic mobility shift assays, both estrogen receptor-alpha and -beta bound both EREs but not the Sp1 site. In reporter assays, both EREs and the Sp1 site demonstrated estrogen responsiveness and tissue specificity; transiently transfected uterine Ishikawa cells or breast MCF-7 cells showed differential responses to E2 treatment. Each response element (Sp1, ERE1, and ERE2) drove distinct differential expression in each cell type. Sp1 protein was expressed in a menstrual-cycle stage-specific expression pattern in endometrium, first expressed in perivascular cells.
Conclusions:
Tissue specificity inherent to a regulatory element as well as differential cellular expression of transcription factors imparts differential tissue-specific estrogen responsiveness.
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