E6-Associated Protein Dependent Estrogen Receptor Regulation of Protein Kinase A Regulatory Subunit R2A Expression in Neuroblastoma
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Humana Press Inc.
Abstract
E6ap is a known transcriptional coregulator for estrogen receptor alpha (Er, Erα) in the presence of estrogen. Protein kinase A (PKA) contains two regulatory subunits derived from four genes. Recent evidence demonstrates that PKA regulates E6ap activity. Data generated in our lab indicated estrogen dependent regulation of Pkar2a levels. Our project sets to investigate a possible feedback mechanism constituting of Erα and E6ap transcriptional regulation of Pkar2a expression. Western blot evaluated protein regulation correlations with E2 in mouse neuroblastoma lines. Bioinformatics detected estrogen response element (ERE) sequences. quantitative polymerase chain reaction (qPCR) validated the western blot results. ERE oligonucleotides were synthesized. Reporter gene transcriptional activity was evaluated via Luciferase assay output. Electromobility shift assay (EMSA) assessed direct binding between Erα relevant sequences. Chromatin immunoprecipitation (ChIP) and Re-ChIP were conducted in quantifying protein complex recruitment levels. Pkar2a protein expression directly correlated with E2, and four putative ERE sequences were identified. Pkar2a mRNA expression reverted to baseline with either E2 or E6ap absent. In the presence of E2, ERE-1 and ERE-4 possessed Luciferase reporter gene transcriptional capabilities. ERE-1 portrayed band shifts, representing direct binding to Erα with E2 supplementation. With E2, ERE-1 significantly enhanced Erα and E6ap recruitment levels to the Pkar2a promoter. Pkar2a is directly regulated by Erα and E6ap in the presence of estrogen stimulus. This work indicates a feedback mechanism in the interplay between PKA and E6ap, which may prove crucial for the role of both proteins in cancers and neurogenetic diseases like Angelman syndrome. © 2017, Springer Science+Business Media New York.
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Angelman syndrome, E6ap, Estrogen receptor, Neuroblastoma, Protein kinase a, Ube3a, Animals, Cell line, tumor, Cyclic amp-dependent protein kinases, Estradiol, Mice, Neurons, Promoter regions, genetic, Receptors, estrogen, Response elements, Ubiquitin-protein ligases, Cyclic amp dependent protein kinase regulatory subunit r2a, Estrogen receptor alpha, Protein e6, Protein serine threonine kinase, Unclassified drug, Cyclic amp dependent protein kinase, Ubiquitin protein ligase, Amino acid sequence, Animal cell, Article, Bioinformatics, Chromatin immunoprecipitation, Controlled study, Estrogen responsive element, Estrogen responsive element 1, Estrogen responsive element 4, Feedback system, Gel mobility shift assay, Genetic transcription, Mouse, Nonhuman, Polymerase chain reaction, Protein expression, Protein synthesis, Receptor binding, Regulatory mechanism, Reporter gene, Transcription regulation, Western blotting, Animal, Dna responsive element, Drug effect, Metabolism, Nerve cell, Physiology, Promoter region, Tumor cell line