激情深爱五月-激情视频亚洲-激情视频综合网-激情四房-激情婷婷-激情婷婷丁香

最近搜索:細胞培養(yǎng) 微生物學 分子生物 生物化學
首頁>>免疫學>>一抗>>雌激素受體α抗體
雌激素受體α抗體
  • 產(chǎn)品貨號:
    BN41578R
  • 中文名稱:
    雌激素受體α抗體
  • 英文名稱:
    Rabbit anti-Estrogen Receptor alpha Polyclonal antibody
  • 品牌:
    Biorigin
  • 貨號

    產(chǎn)品規(guī)格

    售價

    備注

  • BN41578R-50ul

    50ul

    ¥1486.00

    交叉反應:Rat,Mouse,Human 推薦應用:WB,IHC-P,IHC-F,IF,Flow-Cyt,ELISA

  • BN41578R-100ul

    100ul

    ¥2360.00

    交叉反應:Rat,Mouse,Human 推薦應用:WB,IHC-P,IHC-F,IF,Flow-Cyt,ELISA

  • BN41578R-200ul

    200ul

    ¥3490.00

    交叉反應:Rat,Mouse,Human 推薦應用:WB,IHC-P,IHC-F,IF,Flow-Cyt,ELISA

產(chǎn)品描述

文名稱Estrogen Receptor alpha
中文名稱雌激素受體α抗體
別    名Estradiol receptor; Estrogen receptor alpha; Estradiol Receptor-alpha; Estrogen Receptor 1; Atherosclerosis, susceptibility to, included; DKFZp686N23123; ER Alpha; ER; ER-alpha; ERalpha; ER[a]; Era; ESR; ESR1; ESR1_HUMAN; ESR2; ESRA; Estr; Estrogen receptor 1 (alpha); Estrogen resistance, included; HDL cholesterol, augmented response of, to hormone replacement, included; Myocardial infarction, susceptibility to, included; NR3A1; Nuclear receptor subfamily 3 group A member 1; OTTHUMP00000017718; OTTHUMP00000017719; RNESTROR; AA420328; AU041214; ER[a]; Estra; Nr3a1.  




研究領域腫瘤  免疫學  生長因子和激素  內分泌病  
抗體來源Rabbit
克隆類型Polyclonal
交叉反應Human, Rat,  (predicted: Mouse, )
產(chǎn)品應用WB=1:500-2000 ELISA=1:5000-10000 IHC-P=1:100-500 IHC-F=1:100-500 Flow-Cyt=0.2g/Test ICC=1:100 IF=1:100-500 (石蠟切片需做抗原修復)
not yet tested in other applications.
optimal dilutions/concentrations should be determined by the end user.
分 子 量67kDa
細胞定位細胞核 細胞漿 細胞膜 
性    狀Liquid
濃    度1mg/ml
免 疫 原KLH conjugated synthetic peptide derived from mouse ER-alpha:501-600/600 
亞    型IgG
純化方法affinity purified by Protein A
儲 存 液0.01M TBS(pH7.4) with 1% BSA, 0.03% Proclin300 and 50% Glycerol.
保存條件Shipped at 4℃. Store at -20 °C for one year. Avoid repeated freeze/thaw cycles.
PubMedPubMed
產(chǎn)品介紹Estrogen 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.

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.

Subunit:
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. 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 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 DYX1C1. 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 ESE1 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.

Subcellular Location:
Isoform 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 Specificity:
Widely expressed. Isoform 3 is not expressed in the pituitary gland.

Post-translational modifications:
Phosphorylated by cyclin A/CDK2 and CK1. Phosphorylation probably enhances transcriptional activity. Self-association induces phosphorylation.
Glycosylated; contains N-acetylglucosamine, probably O-linked.
Ubiquitinated. Deubiquitinated by OTUB1.
Dimethylated by PRMT1 at Arg-260. The methylation may favor cytoplasmic localization.
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.

Similarity:
Belongs to the nuclear hormone receptor family. NR3 subfamily.
Contains 1 nuclear receptor DNA-binding domain.

SWISS:
P03372

Gene ID:
2099

Database links:

Entrez Gene: 407238 Cow

Entrez Gene: 403640 Dog

Entrez Gene: 2099 Human

Entrez Gene: 13982 Mouse

Entrez Gene: 24890 Rat

Omim: 133430 Human

SwissProt: P49884 Cow

SwissProt: P03372 Human

SwissProt: P19785 Mouse

SwissProt: P06211 Rat

Unigene: 208124 Human

Unigene: 463262 Mouse

Unigene: 9213 Mouse

Unigene: 10595 Rat



Important Note:
This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.

類固醇受體(Steroid Receptors)


主站蜘蛛池模板: 亚洲国产精品无码麻豆 | 国产精品久久毛片A片杨颖 国产精品久久免费视频 | 久久99国产精品二区护士 | 欧美成人一区二区三区高清 | 欧美大肥婆大肥BBBBB | 少妇被躁爽到呻吟全过的小说 | a级免费视频| 欧美三级欧美成人高清 | 欧美日韩内射少妇 | 国产高清无码日韩一区 | 国产精品卡通动漫蜜臀av | a级国产精品片 | 国语高清精品一区二区三区 | 精品无码人妻一区二区三区18 | 国产v亚洲v天堂宗合 | 久久这里只有精品1 | 国产精品九九九午夜 | 婷婷四月开心色房播播 | 国产成人禁片免费观看视频 | 久久精品综合国产二区 | 精品国产一区二区三区香蕉欧美 | 国产丝袜视频在线观看 | 欧美日本精品一区二区三区 | 内射少妇三洞齐开 | 精品国产欧美日韩另类一区 | 老司机午夜免费福利 | 人妻系列无码专区 | 国产午夜片无码区在线观看爱情 | 亚洲午夜精品A片久久W | 国产精品女同一区二区久久夜 | 国产极品在线视频 | 国产亚洲精品久久久性色情软件 | 日韩精品人妻无码久久影院 | 波多野结衣教师中文字幕 | 成人国产精品免费视频不卡 | 久久这里只有热精品18 | 国产精品人妻一区二区 | ⅴ天堂中文在线 | 在线看片无码亚洲 | 亚洲欧美国产精品久久久 | 日韩精品无码一区AAA片 |