anti-beta 2 Adrenergic Receptor (ADRB2) 抗体产品概述

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anti-Adrenergic, beta-2-, Receptor, Surface 抗体 (ADRB2)
在www.antibodies-online.cn可供276 Adrenergic, beta-2-, Receptor, Surface (ADRB2) 抗体的24不同的供货商。 再加上,我们可以发beta 2 Adrenergic Receptor 试剂盒 (43)beta 2 Adrenergic Receptor 蛋白 (4)和数多这个蛋白质的别的产品。 总共342 beta 2 Adrenergic Receptor产品已列进来了。
别名:
Adrb-2, adrb2, ADRB2R, ADRBR, B2AR, Badm, BAR, BETA2AR, Gpcr7, zgc:162188
列出全部抗体 基因 基因ID UniProt
ADRB2 11555 P18762
ADRB2 154 P07550
ADRB2 24176  

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引用最多的anti-beta 2 Adrenergic Receptor 抗体

  1. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for EIA, WB - ABIN359490 : Kobilka, Dixon, Frielle, Dohlman, Bolanowski, Sigal, Yang-Feng, Francke, Caron, Lefkowitz: cDNA for the human beta 2-adrenergic receptor: a protein with multiple membrane-spanning domains and encoded by a gene whose chromosomal location is shared with that of the receptor for platelet-derived growth factor. in Proceedings of the National Academy of Sciences of the United States of America 1987 (PubMed)
    Show all 3 references for 359490

  2. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for EIA, WB - ABIN359489 : Emorine, Marullo, Delavier-Klutchko, Kaveri, Durieu-Trautmann, Strosberg: Structure of the gene for human beta 2-adrenergic receptor: expression and promoter characterization. in Proceedings of the National Academy of Sciences of the United States of America 1987 (PubMed)
    Show all 3 references for 359489

  3. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for WB - ABIN391399 : Kobilka, MacGregor, Daniel, Kobilka, Caron, Lefkowitz: Functional activity and regulation of human beta 2-adrenergic receptors expressed in Xenopus oocytes. in The Journal of biological chemistry 1987 (PubMed)
    Show all 3 references for 391399

  4. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for FACS, IHC (p) - ABIN391398 : Kobilka, Frielle, Dohlman, Bolanowski, Dixon, Keller, Caron, Lefkowitz: Delineation of the intronless nature of the genes for the human and hamster beta 2-adrenergic receptor and their putative promoter regions. in The Journal of biological chemistry 1987 (PubMed)
    Show all 3 references for 391398

  5. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for FACS, IF (p) - ABIN730153 : Fan, Liao, Tang, Chen, Zhang, Liu, Zhong: Role of ?2-adrenoceptor-?-arrestin2-nuclear factor-?B signal transduction pathway and intervention effects of oxymatrine in ulcerative colitis. in Chinese journal of integrative medicine 2012 (PubMed)
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  6. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for EIA - ABIN358476 : Wolfarth, Rankinen, Mühlbauer, Scherr, Boulay, Pérusse, Rauramaa, Bouchard: Association between a beta2-adrenergic receptor polymorphism and elite endurance performance. in Metabolism: clinical and experimental 2007 (PubMed)
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  7. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for EIA, IHC (p) - ABIN359488 : Cherezov, Rosenbaum, Hanson, Rasmussen, Thian, Kobilka, Choi, Kuhn, Weis, Kobilka, Stevens: High-resolution crystal structure of an engineered human beta2-adrenergic G protein-coupled receptor. in Science (New York, N.Y.) 2007 (PubMed)
    Show all 2 references for 359488

  8. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for IF, IHC - ABIN1531704 : Green, Turki, Innis, Liggett: Amino-terminal polymorphisms of the human beta 2-adrenergic receptor impart distinct agonist-promoted regulatory properties. in Biochemistry 1994 (PubMed)
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  9. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for IF, IHC - ABIN1532731 : Whistler, Enquist, Marley, Fong, Gladher, Tsuruda, Murray, Von Zastrow: Modulation of postendocytic sorting of G protein-coupled receptors. in Science (New York, N.Y.) 2002 (PubMed)
    Show all 2 references for 1532731

  10. Human Polyclonal beta 2 Adrenergic Receptor Primary Antibody for WB - ABIN2792089 : Penco, Buscema, Patrosso, Marocchi, Grossi: New application of intelligent agents in sporadic amyotrophic lateral sclerosis identifies unexpected specific genetic background. in BMC bioinformatics 2008 (PubMed)

更多抗beta 2 Adrenergic Receptor的相互作用对抗体

Zebrafish Adrenergic, beta-2-, Receptor, Surface (ADRB2) interaction partners

  1. Zebrafish larvae lacking beta1AR (显示 ADRB1 抗体) expression by morpholino knockdown displayed lower heart rates than control fish, whereas larvae deficient in both beta2aAR and beta2bAR expression exhibited significantly higher heart rates than controls.

Mouse (Murine) Adrenergic, beta-2-, Receptor, Surface (ADRB2) interaction partners

  1. Together, these data indicate that high-fat diet promotes phosphorylation of the beta2 AR, contributing to impairment of cardiac contractile reserve before cardiac structural and functional remodelling, suggesting that early intervention in the insulin (显示 INS 抗体)-adrenergic signalling network might be effective in prevention of cardiac complications in diabetes

  2. beta2-AR deletion is associated to selective hepatic insulin (显示 INS 抗体) resistance and preserved skeletal muscle insulin (显示 INS 抗体) sensitivity.

  3. The diurnal variation of the humoral immune response was dependent on beta2AR-mediated neural signals and was diminished when lymphocyte recirculation through lymph nodes was stopped.

  4. knocking out of the beta1/2 (显示 TFAP2B 抗体) receptor significantly diminished the ST25 acupuncture-induced inhibition of gastric motility and jejunal motility without significantly altering the enhancement of colonic motility induced by acupuncture at ST25.

  5. The authors show that phosphorylation of S1928 displaces the beta-2 adrenergic receptor from Cav1.2 (显示 CACNA1C 抗体) upon beta-adrenergic stimulation rendering Cav1.2 (显示 CACNA1C 抗体) refractory for several minutes from further beta-adrenergic stimulation.

  6. The Galphas (显示 GNAS 抗体) and Galphaq (显示 GNAQ 抗体) peptides adopt different orientations in beta2-AR and V1AR (显示 AVPR1A 抗体), respectively. The beta2-AR/Galphas (显示 GNAS 抗体) peptide interface is dominated by electrostatic interactions, whereas the V1AR (显示 AVPR1A 抗体)/Galphaq (显示 GNAQ 抗体) peptide interactions are predominantly hydrophobic.

  7. Thus the beta2AR acts as a double-edged sword: increasing TAS2R14 cell surface expression, but when activated by beta-agonist, partially offsetting the expression phenotype by direct receptor:receptor desensitization of TAS2R14 function.

  8. Data show that inhibitory (Galphai2 (显示 GNAI2 抗体)) and stimulatory (GalphasL) G-protein subunits produced minor atrophic and hypertrophic changes in muscle mass, and Galphai2 (显示 GNAI2 抗体) over-expression prevented AAV:beta2-adrenoceptor (beta2-AR) mediated hypertrophy.

  9. Immune cell-expressed beta2AR plays an essential role in regulating the early inflammatory repair response to acute myocardial injury by facilitating cardiac leukocyte infiltration.

  10. In epileptic seizures mouse model, Pkdl (显示 PKD2L1 抗体) deficiency leads to the loss of beta2AR on neuronal cilia, reduction in cAMP levels in the central nervous system, and reduction in the activation of cAMP response element-binding protein.

Cow (Bovine) Adrenergic, beta-2-, Receptor, Surface (ADRB2) interaction partners

  1. These results indicate dependence of hepatic glucocorticoid and adrenergic receptors on stage of maturation in neonatal calves and emphasize the association of alpha1-adrenergic receptor and glucocorticoid receptor (显示 NR3C1 抗体) with neonatal glucose and lipid metabolism.

  2. ADRb2 shows lipid scrambling activity.

  3. relationship between luteal concentrations of oxytocin (OT), noradrenaline (NA), progesterone (P4), oxytocin receptors (OT-R (显示 OXTR 抗体)) and beta(2)-adrenoreceptors (beta(2)-R) gene expression and their protein level throughout the estrous cycle

Human Adrenergic, beta-2-, Receptor, Surface (ADRB2) interaction partners

  1. The frequency of the genotypes and alleles of rs1042711 in ADRB2 showed a significant difference between the COPD (显示 ARCN1 抗体) and control groups. TT genotype and TG and TC haplotypes of rs1042711 in ADRB2 are related to pulmonary function in COPD (显示 ARCN1 抗体) patients. TT genotype of rs1042711 in ADRB2 and smoking amount are risk factors for COPD (显示 ARCN1 抗体) development.

  2. Results provide further evidence for the interaction of rs2400707, and other SNPs within the ADRB2 gene, with childhood trauma in relation to risk for posttraumatic stress disorder.

  3. Gln27Glu polymorphism of ADRB2 influences exercise-induced vascular adaptation in patients with acute coronary syndrome.

  4. Data suggest that ADRB2 (beta2 adrenergic receptor) activation (as illustrated by epinephrine and nor epinephrine) leads to robust calcium ion mobilization from intracellular stores in endoplasmic reticulum via activation of phosphoinositide phospholipase C (PLC) and opening of inositol trisphosphate receptor (IP3R).

  5. Data suggest that post-translational modifications (phosphorylation, oxidation, and nitrosylation) of RyR2 (ryanodine receptor 2 (显示 RYR2 抗体)) occur downstream of production of amyloid beta-peptides through ADRB2 (beta2-adrenergic receptor) Ca2 (显示 CA2 抗体)+ signaling cascade that activates PKA (protein kinase A).

  6. ADRB2 SNPs might be a genetic risk factor for dyslipidemia in the Chinese hypertensive patients. the A46G polymorphism was significantly associated with the elevated risk of hypertriglyceridemia. Haplotype analysis showed that the TAC (显示 IL2RA 抗体) haplotype carrying frequent alleles of the three SNPs played a reduced role in hypertriglyceridemia risk and the TGC (显示 TGM2 抗体) haplotype carrying rare allele of A46G expressed a significant risk effe

  7. The beta2-adrenergic receptor, which induces a short cAMP response, prolongs nuclear cAMP and protein kinase A (PKA) activation by promoting endosomal cAMP production in parathyroid hormone (PTH (显示 PTH 抗体)) receptor signaling through the stimulatory action of G protein Gbetagamma subunits on adenylate cyclase type 2 (显示 ADCY2 抗体).

  8. beta2AR S-palmitoylated at Cys (显示 DNAJC5 抗体)-265 are selectively preserved under a sustained adrenergic stimulation, which results in the down-regulation and degradation of betaAR.

  9. The Galphas (显示 GNAS 抗体) and Galphaq (显示 GNAQ 抗体) peptides adopt different orientations in beta2-AR and V1AR (显示 AVPR1A 抗体), respectively. The beta2-AR/Galphas (显示 GNAS 抗体) peptide interface is dominated by electrostatic interactions, whereas the V1AR (显示 AVPR1A 抗体)/Galphaq (显示 GNAQ 抗体) peptide interactions are predominantly hydrophobic.

  10. Thus the beta2AR acts as a double-edged sword: increasing TAS2R14 (显示 TAS2R14 抗体) cell surface expression, but when activated by beta-agonist, partially offsetting the expression phenotype by direct receptor:receptor desensitization of TAS2R14 (显示 TAS2R14 抗体) function.

Pig (Porcine) Adrenergic, beta-2-, Receptor, Surface (ADRB2) interaction partners

  1. The Galphas (显示 GNAS 抗体) and Galphaq (显示 GNAQ 抗体) peptides adopt different orientations in beta2-AR and V1AR (显示 AVPR1A 抗体), respectively. The beta2-AR/Galphas (显示 GNAS 抗体) peptide interface is dominated by electrostatic interactions, whereas the V1AR (显示 AVPR1A 抗体)/Galphaq (显示 GNAQ 抗体) peptide interactions are predominantly hydrophobic.

  2. A persistent B2R (显示 BDKRB2 抗体)-beta2AR heterodimer was confirmed in bradykinin-stimulated and non-stimulated left ventricular myocardium. BK transactivation of beta2AR enhanced beta2AR-mediated release of tPA (显示 PLAT 抗体).

  3. Prolactin (显示 PRL 抗体) infusion brought about the inhibition of a vasodilatory beta(2)-adrenergic receptor-mediated effect related to the NO intracellular pathway

  4. Intracoronary intermedin (显示 ADM2 抗体) 1-47 augments cardiac perfusion and function in anesthetized pigs: role of calcitonin (显示 CALCA 抗体) receptors and beta-adrenoreceptor-mediated nitric oxide release.

Rhesus Monkey Adrenergic, beta-2-, Receptor, Surface (ADRB2) interaction partners

  1. The results imply ADRB-2-mediated actions in the development of primate follicles

beta 2 Adrenergic Receptor (ADRB2) 抗原简介

Antigen Summary

This gene encodes beta-2-adrenergic receptor which is a member of the G protein-coupled receptor superfamily. This receptor is directly associated with one of its ultimate effectors, the class C L-type calcium channel Ca(V)1.2. This receptor-channel complex also contains a G protein, an adenylyl cyclase, cAMP-dependent kinase, and the counterbalancing phosphatase, PP2A. The assembly of the signaling complex provides a mechanism that ensures specific and rapid signaling by this G protein-coupled receptor. This gene is intronless. Different polymorphic forms, point mutations, and/or downregulation of this gene are associated with nocturnal asthma, obesity and type 2 diabetes.

Alternative names and synonyms associated with beta 2 Adrenergic Receptor (ADRB2)

  • adrenoceptor beta 2, surface (ADRB2) 抗体
  • adrenergic receptor, beta 2b (adrb2b) 抗体
  • beta2-adrenergic receptor (LOC100136153) 抗体
  • adrenergic receptor, beta 2 (Adrb2) 抗体
  • adrenergic, beta-2-, receptor, surface (ADRB2) 抗体
  • adrenoceptor beta 2, surface (Adrb2) 抗体
  • Adrb-2 抗体
  • adrb2 抗体
  • ADRB2R 抗体
  • ADRBR 抗体
  • B2AR 抗体
  • Badm 抗体
  • BAR 抗体
  • BETA2AR 抗体
  • Gpcr7 抗体
  • zgc:162188 抗体

Protein level used designations for ADRB2

adrenergic receptor beta-2 , adrenergic, beta-2-, receptor, surface , beta-2 adrenergic receptor , beta-2b-adrenergic receptor , beta-2 adrenoceptor , beta-2 adrenoreceptor , beta 2-AR , adrenergic receptor beta 2 , adrenergic, beta-2, receptor, surface , catecholamine receptor , beta2-adrenergic receptor , Adrenergic beta 2- receptor surface , adrenergic receptor, beta 2 , Beta-2 adrenergic receptor , Beta-2 adrenoceptor , Beta-2 adrenoreceptor , beta 2 adrenergic receptor , beta-2-adrenergic receptor

GENE ID SPECIES
100170320 Ovis aries
100060659 Equus caballus
100037315 Danio rerio
100136153 Oncorhynchus mykiss
11555 Mus musculus
281605 Bos taurus
154 Homo sapiens
403910 Canis lupus familiaris
24176 Rattus norvegicus
493767 Felis catus
100722663 Cavia porcellus
397357 Sus scrofa
471690 Pan troglodytes
101836719 Mesocricetus auratus
710146 Macaca mulatta
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