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Anti-Estrogen Receptor α Antibody (9L418) (ready to use)

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Catalog No. TMAB-05707

Anti-Estrogen Receptor α Antibody (9L418) is a Mouse antibody targeting Estrogen Receptor α. Anti-Estrogen Receptor α Antibody (9L418) can be used in IHC-P,IHC-Fr,ICC/IF,IF.

Anti-Estrogen Receptor α Antibody (9L418) (ready to use)

Anti-Estrogen Receptor α Antibody (9L418) (ready to use)

😃Good
Catalog No. TMAB-05707
Anti-Estrogen Receptor α Antibody (9L418) is a Mouse antibody targeting Estrogen Receptor α. Anti-Estrogen Receptor α Antibody (9L418) can be used in IHC-P,IHC-Fr,ICC/IF,IF.
Pack SizePriceUSA WarehouseGlobal WarehouseQuantity
3 mL$1037-10 days7-10 days
6 mL$1857-10 days7-10 days
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In Stock Estimated shipping dateUSA Warehouse[1-2 days] Global Warehouse[5-7 days]
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Product Introduction

Bioactivity
Description
Anti-Estrogen Receptor α Antibody (9L418) is a Mouse antibody targeting Estrogen Receptor α. Anti-Estrogen Receptor α Antibody (9L418) can be used in IHC-P,IHC-Fr,ICC/IF,IF.
Ig Type
IgG2b
Clone
9L418
Reactivity
Human
Application
Antibody Type
Monoclonal
Host SpeciesMouse
Subcellular LocalizationIsoform 1: Nucleus. Cytoplasm. Cell membrane; Peripheral membrane protein; Cytoplasmic side. Note=A minor fraction is associated with the inner membrane.Isoform 3: Nucleus. Cytoplasm. Cell membrane; Peripheral membrane protein; Cytoplasmic side. Cell membrane; Single-pass type I membrane protein. Note=Associated with the inner membrane via palmitoylation (Probable). At least a subset exists as a transmembrane protein with a N-terminal extracellular domain.Nucleus. Golgi apparatus. Cell membrane. Note=Colocalizes with ZDHHC7 and ZDHHC21 in the Golgi apparatus where most probably palmitoylation occurs. Associated with the plasma membrane when palmitoylated.
Tissue SpecificityWidely expressed. Isoform 3 is not expressed in the pituitary gland.
ConstructionHybridoma Monoclonal Antibody
PurificationProtein G purified
AppearanceLiquid
Formulation0.01M PBS (pH7.4) with 1% BSA and 0.02% Proclin300.
Research BackgroundEstrogen and progesterone receptor are members of a family of transcription factors that are regulated by the binding of their cognate ligands. The interaction of hormone-bound estrogen receptors with estrogen responsive elements(EREs) alters transcription of ERE-containing genes. The carboxy terminal region of the estrgen receptor contains the ligand binding domain, the amino terminus serves as the transactivation domain, and the DNA binding domain is centrally located. Two forms of estrogen receptor have been identified, ER Alpha and ER Beta. ER Alpha and ER Beta have been shown to be differentially activated by various ligands. The biological response to progesterone is mediated by two distinct forms of the human progesterone receptor (hPR-A and hPR-B), which arise from alternative splicing. In most cells, hPR-B functions as a transcriptional activator of progesterone-responsive gene, whereas hPR-A function as a transcriptional inhibitor of all steroid hormone receptors.
Antigen Details
Immunogen
human Estrogen Receptor α
Antigen Species
Human
Gene Name
ESR1
Gene ID
Protein Name
Estrogen receptor
Uniprot ID
Function
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. Ligand-dependent nuclear transactivation involves either direct homodimer binding to a palindromic estrogen response element (ERE) sequence or association with other DNA-binding transcription factors, such as AP-1/c-Jun, c-Fos, ATF-2, Sp1 and Sp3, to mediate ERE-independent signaling. Ligand binding induces a conformational change allowing subsequent or combinatorial association with multiprotein coactivator complexes through LXXLL motifs of their respective components. Mutual transrepression occurs between the estrogen receptor (ER) and NF-kappa-B in a cell-type specific manner. Decreases NF-kappa-B DNA-binding activity and inhibits NF-kappa-B-mediated transcription from the IL6 promoter and displace RELA/p65 and associated coregulators from the promoter. Recruited to the NF-kappa-B response element of the CCL2 and IL8 promoters and can displace CREBBP. Present with NF-kappa-B components RELA/p65 and NFKB1/p50 on ERE sequences. Can also act synergistically with NF-kappa-B to activate transcription involving respective recruitment adjacent response elements; the function involves CREBBP. Can activate the transcriptional activity of TFF1. Also mediates membrane-initiated estrogen signaling involving various kinase cascades. Isoform 3 is involved in activation of NOS3 and endothelial nitric oxide production. Isoforms lacking one or several functional domains are thought to modulate transcriptional activity by competitive ligand or DNA binding and/or heterodimerization with the full length receptor. Isoform 3 can bind to ERE and inhibit isoform 1.
Chemical Properties
Molecular WeightTheoretical: 66 kDa.
Stability & Storage
Stability & StorageStore at 2°C-8°C for 12 months, do not freeze.
TransportShipping with blue ice.

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Tech Support

Please see Inhibitor Handling Instructions for more frequently ask questions. Topics include: how to prepare stock solutions, how to store products, and cautions on cell-based assays & animal experiments, etc
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