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Anti-phospho-Estrogen Receptor alpha (Ser118) Antibody, clone NL44 is a Rabbit Monoclonal Antibody for detection of ER alpha also known as Estrogen receptor alpha & has been tested in WB.
More>>Anti-phospho-Estrogen Receptor alpha (Ser118) Antibody, clone NL44 is a Rabbit Monoclonal Antibody for detection of ER alpha also known as Estrogen receptor alpha & has been tested in WB. Less<<
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Anti-phospho-Estrogen Receptor alpha (Ser118) Antibody, clone NL44 is a Rabbit Monoclonal Antibody for detection of ER alpha also known as Estrogen receptor alpha & has been tested in WB.
Key Applications
Western Blotting
Biological Information
Immunogen
Peptide containing the sequence QLpSPF in which pS corresponds to phosphoserine at residue 118 of human estrogen receptor alpha
Clone
NL44
Host
Rabbit
Specificity
phospho-estrogen receptor a (Ser118)
Isotype
IgG
Species Reactivity
Human
Species Reactivity Note
Predicted to cross-react with camel, mouse, pig and Syrian hamster based on sequence homology
This gene encodes an estrogen receptor, a ligand-activated transcription factor composed of several domains important for hormone binding, DNA binding, and activation of transcription. The protein localizes to the nucleus where it may form a homodimer or a heterodimer with estrogen receptor 2. Estrogen and its receptors are essential for sexual development and reproductive function, but also play a role in other tissues such as bone. Estrogen receptors are also involved in pathological processes including breast cancer, endometrial cancer, and osteoporosis. Alternative splicing results in several transcript variants, which differ in their 5' UTRs and use different promoters.
FUNCTION: SwissProt: P03372 # Nuclear hormone receptor. The steroid hormones and their receptors are involved in the regulation of eukaryotic gene expression and affect cellular proliferation and differentiation in target tissues. SIZE: 595 amino acids; 66216 Da SUBUNIT: Binds DNA as a homodimer. Can form a heterodimer with ESR2. Interacts with NCOA3, NCOA5 and NCOA6 coactivators, leading to a strong increase of transcription of target genes. Interacts with NCOA7 in a ligand-inducible manner. Interacts with PHB2, PELP1 and UBE1C. Interacts with AKAP13. Interacts with CUEDC2. Interacts with JARID1A. Interacts with SMARD1. Interacts with SLC30A9 (By similarity). Interacts with HEXIM1 and MAP1S. Interacts with PBXIP1. SUBCELLULAR LOCATION: Nucleus. DOMAIN: SwissProt: P03372 Composed of three domains: a modulating N-terminal domain, a DNA-binding domain and a C-terminal steroid-binding domain. PTM: Phosphorylated by cyclin A/CDK2. Phosphorylation probably enhances transcriptional activity. SIMILARITY: Belongs to the nuclear hormone receptor family. NR3 subfamily. & Contains 1 nuclear receptor DNA-binding domain. MISCELLANEOUS: In the absence of ligand, steroid hormone receptors are thought to be weakly associated with nuclear components; hormone binding greatly increases receptor affinity. The hormone- receptor complex appears to recognize discrete DNA sequences upstream of transcriptional start sites.
Molecular Weight
~66kDa
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Quality Assurance
routinely evaluated by immunoblot on RIPA lysates from MCF-7 cells treated with estradiol and EGF, and recombinant estrogen receptor alpha phosphorylated in vitro with MAP Kinase 2/Erk2, active (Catalog #14-173)
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Phosphorylation of human estrogen receptor alpha at serine 118 by two distinct signal transduction pathways revealed by phosphorylation-specific antisera. Chen, Dongsheng, et al. Oncogene, 21: 4921-31 (2002)
2002
Estrogen receptor alpha (ERalpha) is a transcription factor that regulates expression of target genes in a ligand-dependent manner. Activation of gene expression is mediated by two transcription activation functions AF-1 and AF-2, which act in a promoter- and cell-specific manner. Whilst AF-2 activity is regulated by estrogen (E2) binding, the activity of AF-1 is additionally modulated by phosphorylation at several sites. One of these phosphorylation sites, serine 118 (S118) is of particular interest as its mutation significantly reduces ERalpha activity. Previous studies have shown that S118 can be phosphorylated by the ERK1/2 mitogen activated protein kinases (MAPK) and by the cyclin-dependent protein kinase Cdk7. In this study we use antisera that specifically recognize ERalpha phosphorylated at S118 to demonstrate that MAPK phosphorylates S118 in a ligand-independent manner, whereas Cdk7 mediates E2-induced phosphorylation of S118. E2 stimulation of S118 phosphorylation was observed within 10 min of its addition and was maximal at 10(-7) M E2. S118 phosphorylation was maximal at 30 min but then declined, such that by 180 min following E2 addition little S118 phosphorylation was evident. S118 phosphorylation was also induced by the partial estrogen antagonist 4-hydroxytamoxifen, but not by the complete antagonist ICI 182, 780. S118 phosphorylation upon addition of the MAPK inducers EGF or PMA followed the expected time courses. Finally, we show that ERalpha is phosphorylated at S118 in vivo using immunoblotting of extracts prepared from a series of ERalpha-positive breast tumours.
Estradiol-induced phosphorylation of serine 118 in the estrogen receptor is independent of p42/p44 mitogen-activated protein kinase. Joel, P B, et al. J. Biol. Chem., 273: 13317-23 (1998)
1998
Phosphorylation of Ser118 of human estrogen receptor alpha (ER) enhances ER-mediated transcription and is induced by hormone binding and by activation of the mitogen-activated protein kinase (MAPK) pathway. We discovered that phosphorylation of Ser118 reduces the electrophoretic mobility of the ER. Using this mobility shift as an assay, we determined the in vivo stoichiometry and kinetics of Ser118 phosphorylation in response to estradiol, ICI 182,780, epidermal growth factor (EGF), and phorbol 12-myristate 13-acetate (PMA). In human breast cancer MCF-7 cells, estradiol induced a steady state phosphorylation of Ser118 within 20 min with a stoichiometry of 0.67 mol of phosphate/mol of ER. Estradiol did not activate p42/p44 MAPK, and basal p42/p44 MAPK activity was not sufficient to account for phosphorylation of Ser118 in response to estradiol. In contrast, both EGF and PMA induced a rapid, transient phosphorylation of Ser118 with a stoichiometry of approximately 0. 25, and the onset of Ser118 phosphorylation correlated with the onset of p42/p44 MAPK activation by these agents. Either the EGF- or PMA-induced Ser118 phosphorylation could be inhibited without influencing estradiol-induced Ser118 phosphorylation. The data suggest that a kinase other than p42/p44 MAPK is involved in the estradiol-induced Ser118 phosphorylation. We propose that the hormone-induced change in ER conformation exposes Ser118 for phosphorylation by a constitutively active kinase.