产品: Estrogen Receptor-alpha 抗体
货号: BF8047
描述: Mouse monoclonal antibody to Estrogen Receptor-alpha
应用: WB IHC
反应: Human, Mouse
分子量: 66kDa,55kDa; 66kD(Calculated).
蛋白号: P03372

浏览相似产品>>

   规格 价格 库存
 100ul RMB¥ 688 2300 现货

货期: 当天发货

联系销售

产品描述

来源:
Mouse
应用:
WB 1:500-1:3000, IHC 1:50-1:200
*The optimal dilutions should be determined by the end user.
*Tips:

WB: 适用于变性蛋白样本的免疫印迹检测. IHC: 适用于组织样本的石蜡(IHC-p)或冰冻(IHC-f)切片样本的免疫组化/荧光检测. IF/ICC: 适用于细胞样本的荧光检测. ELISA(peptide): 适用于抗原肽的ELISA检测.

反应:
Human,Mouse
克隆:
Monoclonal [AFfirm8047(AFP21844)]
特异性:
Estrogen Receptor-alpha Antibody detects endogenous levels of total Estrogen Receptor-alpha.
偶联:
Unconjugated.
纯化:
Affinity-chromatography.
保存:
Mouse IgG1 in phosphate buffered saline (without Mg2+ and Ca2+), pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol. Store at -20 °C. Stable for 12 months from date of receipt.
别名:

展开/折叠

DKFZp686N23123; ER alpha; ER; ER-alpha; Era; ESR; ESR1; ESR1_HUMAN; ESRA; Estradiol receptor; Estrogen nuclear receptor alpha; Estrogen receptor 1; Estrogen receptor alpha 3*,4,5,6,7*/822 isoform; Estrogen receptor alpha; Estrogen receptor alpha delta 3*,4,5,6,7*,8*/941 isoform; Estrogen receptor alpha delta 3*,4,5,6,7*/819 2 isoform; Estrogen receptor alpha delta 4 +49 isoform; Estrogen receptor alpha delta 4*,5,6,7*/654 isoform; Estrogen receptor alpha delta 4*,5,6,7,8*/901 isoform; Estrogen receptor alpha E1 E2 1 2; Estrogen receptor alpha E1 N2 E2 1 2; Estrogen receptor; ESTRR; NR3A1; Nuclear receptor subfamily 3 group A member 1;

抗原和靶标

免疫原:

A synthesized peptide derived from human Estrogen Receptor-alpha.

Uniprot:
基因/基因ID:
表达:
P03372 ESR1_HUMAN:

Widely expressed. Isoform 3 is not expressed in the pituitary gland.

描述:
ER-alpha is a nuclear hormone receptor and transcription factor. Regulates gene expression and affects cellular proliferation and differentiation in target tissues. Two splice-variant isoforms have been described.
序列:
MTMTLHTKASGMALLHQIQGNELEPLNRPQLKIPLERPLGEVYLDSSKPAVYNYPEGAAYEFNAAAAANAQVYGQTGLPYGPGSEAAAFGSNGLGGFPPLNSVSPSPLMLLHPPPQLSPFLQPHGQQVPYYLENEPSGYTVREAGPPAFYRPNSDNRRQGGRERLASTNDKGSMAMESAKETRYCAVCNDYASGYHYGVWSCEGCKAFFKRSIQGHNDYMCPATNQCTIDKNRRKSCQACRLRKCYEVGMMKGGIRKDRRGGRMLKHKRQRDDGEGRGEVGSAGDMRAANLWPSPLMIKRSKKNSLALSLTADQMVSALLDAEPPILYSEYDPTRPFSEASMMGLLTNLADRELVHMINWAKRVPGFVDLTLHDQVHLLECAWLEILMIGLVWRSMEHPGKLLFAPNLLLDRNQGKCVEGMVEIFDMLLATSSRFRMMNLQGEEFVCLKSIILLNSGVYTFLSSTLKSLEEKDHIHRVLDKITDTLIHLMAKAGLTLQQQHQRLAQLLLILSHIRHMSNKGMEHLYSMKCKNVVPLYDLLLEMLDAHRLHAPTSRGGASVEETDQSHLATAGSTSSHSLQKYYITGEAEGFPATV

翻译修饰 - P03372 作为底物

Site PTM Type Enzyme
T4 Phosphorylation
T7 Phosphorylation
S10 Phosphorylation
K32 Acetylation
S46 Phosphorylation
S47 Phosphorylation
Y52 Phosphorylation P00519 (ABL1)
S102 Phosphorylation P49841 (GSK3B)
S104 Phosphorylation P49841 (GSK3B) , P27361 (MAPK3) , P28482 (MAPK1) , P31749 (AKT1) , P24941 (CDK2) , Q00526 (CDK3) , P42345 (MTOR)
S106 Phosphorylation P24941 (CDK2) , Q00526 (CDK3) , P49841 (GSK3B) , P28482 (MAPK1) , P27361 (MAPK3) , P42345 (MTOR) , P31749 (AKT1)
S118 Phosphorylation P24941 (CDK2) , P27361 (MAPK3) , O15111 (CHUK) , P49841 (GSK3B) , P31749 (AKT1) , Q16539 (MAPK14) , P50613 (CDK7) , Q00526 (CDK3) , P28482 (MAPK1)
S154 Phosphorylation
S167 Phosphorylation O14965 (AURKA) , P68400 (CSNK2A1) , P51812 (RPS6KA3) , P31751 (AKT2) , P23443 (RPS6KB1) , Q14164 (IKBKE) , P31749 (AKT1) , Q15418 (RPS6KA1)
K171 Acetylation
K171 Methylation
K171 Sumoylation
K180 Methylation
K180 Sumoylation
S212 Phosphorylation
Y219 Phosphorylation P00519 (ABL1)
S236 Phosphorylation P17612 (PRKACA)
K244 Acetylation
K252 Acetylation
R260 Methylation
K266 Acetylation
K266 Methylation
K266 Sumoylation
K268 Acetylation
K268 Sumoylation
R277 Methylation
S282 Phosphorylation P68400 (CSNK2A1)
S294 Phosphorylation P24941 (CDK2) , Q16539 (MAPK14)
K299 Acetylation
K299 Sumoylation
K302 Acetylation
K302 Methylation
K302 Ubiquitination
K303 Acetylation
S305 Phosphorylation Q13153 (PAK1) , P31749 (AKT1) , P17612 (PRKACA) , O14965 (AURKA) , Q9UHD2 (TBK1) , O96013 (PAK4)
T311 Phosphorylation Q16539 (MAPK14)
S341 Phosphorylation
K401 Methylation
K472 Acetylation
K472 Sumoylation
T485 Phosphorylation
Y537 Phosphorylation P06239 (LCK) , P12931 (SRC)
S554 Phosphorylation
S559 Phosphorylation P68400 (CSNK2A1)
S576 Phosphorylation
S578 Phosphorylation
T594 Phosphorylation

研究背景

功能:

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. Essential for MTA1-mediated transcriptional regulation of BRCA1 and BCAS3. Isoform 3 can bind to ERE and inhibit isoform 1.

翻译修饰:

Phosphorylated by cyclin A/CDK2 and CK1. Phosphorylation probably enhances transcriptional activity. Self-association induces phosphorylation. Dephosphorylation at Ser-118 by PPP5C inhibits its transactivation activity. Phosphorylated by LMTK3 in vitro.

Glycosylated; contains N-acetylglucosamine, probably O-linked.

Ubiquitinated; regulated by LATS1 via DCAF1 it leads to ESR1 proteasomal degradation. Deubiquitinated by OTUB1.

Dimethylated by PRMT1 at Arg-260. The methylation may favor cytoplasmic localization. Demethylated by JMJD6 at Arg-260.

Palmitoylated (isoform 3). Not biotinylated (isoform 3).

Palmitoylated by ZDHHC7 and ZDHHC21. Palmitoylation is required for plasma membrane targeting and for rapid intracellular signaling via ERK and AKT kinases and cAMP generation, but not for signaling mediated by the nuclear hormone receptor.

细胞定位:

Nucleus. Cytoplasm. Cell membrane>Peripheral membrane protein>Cytoplasmic side.
Note: A minor fraction is associated with the inner membrane.

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.

Extracellular region or secreted Cytosol Plasma membrane Cytoskeleton Lysosome Endosome Peroxisome ER Golgi apparatus Nucleus Mitochondrion Manual annotation Automatic computational assertionSubcellular location
组织特异性:

Widely expressed. Isoform 3 is not expressed in the pituitary gland.

亚基结构:

Binds DNA as a homodimer. Can form a heterodimer with ESR2. Isoform 3 can probably homodimerize or heterodimerize with isoform 1 and ESR2. Interacts with FOXC2, MAP1S, SLC30A9, UBE1C and NCOA3 coactivator (By similarity). Interacts with EP300; the interaction is estrogen-dependent and enhanced by CITED1. Interacts with CITED1; the interaction is estrogen-dependent. Interacts with NCOA5 and NCOA6 coactivators. Interacts with NCOA7; the interaction is a ligand-inducible. Interacts with PHB2, PELP1 and UBE1C. Interacts with AKAP13. Interacts with CUEDC2. Interacts with KDM5A. Interacts with SMARD1. Interacts with HEXIM1. Interacts with PBXIP1. Interaction with MUC1 is stimulated by 7 beta-estradiol (E2) and enhances ERS1-mediated transcription. Interacts with DNTTIP2, FAM120B and UIMC1. Interacts with isoform 4 of TXNRD1. Interacts with KMT2D/MLL2. Interacts with ATAD2 and this interaction is enhanced by estradiol. Interacts with KIF18A and LDB1. Interacts with RLIM (via C-terminus). Interacts with MACROD1. Interacts with SH2D4A and PLCG. Interaction with SH2D4A blocks binding to PLCG and inhibits estrogen-induced cell proliferation. Interacts with DYNLL1. Interacts with CCDC62 in the presence of estradiol/E2; this interaction seems to enhance the transcription of target genes. Interacts with NR2C1; the interaction prevents homodimerization of ESR1 and suppresses its transcriptional activity and cell growth. Interacts with DNAAF4. Interacts with PRMT2. Interacts with PI3KR1 or PI3KR2, SRC and PTK2/FAK1. Interacts with RBFOX2. Interacts with STK3/MST2 only in the presence of SAV1 and vice-versa. Binds to CSNK1D. Interacts with NCOA2; NCOA2 can interact with ESR1 AF-1 and AF-2 domains simultaneously and mediate their transcriptional synergy. Interacts with DDX5. Interacts with NCOA1; the interaction seems to require a self-association of N-terminal and C-terminal regions. Interacts with ZNF366, DDX17, NFKB1, RELA, SP1 and SP3. Interacts with NRIP1 (By similarity). Interacts with GPER1; the interaction occurs in an estrogen-dependent manner. Interacts with CLOCK and the interaction is stimulated by estrogen. Interacts with BCAS3. Interacts with TRIP4 (ufmylated); estrogen dependent. Interacts with LMTK3; the interaction phosphorylates ESR1 (in vitro) and protects it against proteasomal degradation. Interacts with CCAR2 (via N-terminus) in a ligand-independent manner. Interacts with ZFHX3. Interacts with SFR1 in a ligand-dependent and -independent manner. Interacts with DCAF13, LATS1 and DCAF1; regulates ESR1 ubiquitination and ubiquitin-mediated proteasomal degradation. Interacts (via DNA-binding domain) with POU4F2 (C-terminus); this interaction increases the estrogen receptor ESR1 transcriptional activity in a DNA- and ligand 17-beta-estradiol-independent manner (By similarity). Interacts with ESRRB isoform 1. Interacts with UBE3A and WBP2. Interacts with GTF2B. Interacts with RBM39 (By similarity). In the absence of hormonal ligand, interacts with TACC1.

蛋白家族:

Composed of three domains: a modulating N-terminal domain, a DNA-binding domain and a C-terminal ligand-binding domain. The modulating domain, also known as A/B or AF-1 domain has a ligand-independent transactivation function. The C-terminus contains a ligand-dependent transactivation domain, also known as E/F or AF-2 domain which overlaps with the ligand binding domain. AF-1 and AF-2 activate transcription independently and synergistically and act in a promoter- and cell-specific manner. AF-1 seems to provide the major transactivation function in differentiated cells.

Belongs to the nuclear hormone receptor family. NR3 subfamily.

研究领域

· Human Diseases > Drug resistance: Antineoplastic > Endocrine resistance.

· Human Diseases > Cancers: Overview > Pathways in cancer.   (View pathway)

· Human Diseases > Cancers: Overview > Proteoglycans in cancer.

· Human Diseases > Cancers: Specific types > Breast cancer.   (View pathway)

· Organismal Systems > Endocrine system > Estrogen signaling pathway.   (View pathway)

· Organismal Systems > Endocrine system > Prolactin signaling pathway.   (View pathway)

· Organismal Systems > Endocrine system > Thyroid hormone signaling pathway.   (View pathway)

· Organismal Systems > Excretory system > Endocrine and other factor-regulated calcium reabsorption.

文献引用

1). Secoisolariciresinol diglucoside regulates estrogen receptor expression to ameliorate OVX-induced osteoporosis. Journal of orthopaedic surgery and research, 2023 (PubMed: 37875947) [IF=2.6]

Application: WB    Species: Rat    Sample:

Fig. 5 SDG promoted the level of estradiol (E2) and the expression of ERα and ERβ of the femur in OVX rats. A-D IHC result and quantitative statistical result of ERα (200 × , scale bar = 50 μm; 400 × , scale bar = 20 μm). E The serum level of E2 was detected by ELISA (n = 6). The expression of ERα and ERβ was determined by IHC and Western Blot. F Representative protein bands of ERα and ERβ. G-H The corresponding quantitative statistical results of ERα and ERβ (n = 3). All data are expressed as the mean ± SD. P## 

限制条款

产品的规格、报价、验证数据请以官网为准,官网链接:www.affbiotech.com | www.affbiotech.cn(简体中文)| www.affbiotech.jp(日本語)

产品的数据信息为Affinity所有,未经授权不得收集Affinity官网数据或资料用于商业用途,对抄袭产品数据的行为我们将保留诉诸法律的权利。

产品相关数据会因产品批次、产品检测情况随时调整,如您已订购该产品,请以订购时随货说明书为准,否则请以官网内容为准,官网内容有改动时恕不另行通知。

Affinity保证所销售产品均经过严格质量检测。如您购买的商品在规定时间内出现问题需要售后时,请您在Affinity官方渠道提交售后申请。

产品仅供科学研究使用。不用于诊断和治疗。 

产品未经授权不得转售。

Affinity Biosciences将不会对在使用我们的产品时可能发生的专利侵权或其他侵权行为负责。Affinity Biosciences, Affinity Biosciences标志和所有其他商标所有权归Affinity Biosciences LTD.