phospho-Eralpha(Tyr-537) Mouse Monoclonal Antibody

phospho-Eralpha(Tyr-537) Mouse Monoclonal Antibody

Cat: AMM81600
Boyut:50μL Fiyat:$168_x000D_
Boyut:100μL Fiyat:$300_x000D_
Uygulama:ELISA,FC
Reaktivite:Human
Konjuge:Unconjugated
İsteğe bağlı konjugeler: Biotin, FITC (ücretsiz). Diğer 26 konjugatı görün.

Gen Adı:phospho-Eralpha(Tyr-537)
Category: マウスモノクローナル抗体 Tags: , , , , ,
phospho-Eralpha(Tyr-537) Mouse Monoclonal Antibody
Konjugasyon: Unconjugated
Mouse monoclonal Antibody
Uygulama
IHC  ICC/IF  ELISA ELISA,FC
Reaktivite
Human
Gen Adı
phospho-Eralpha(Tyr-537)
Saklama
Aliquot and store at -20°C (valid for 12 months). Avoid freeze/thaw cycles.
Özet
Ürün Adı phospho-Eralpha(Tyr-537) Mouse Monoclonal Antibody
Açıklama Mouse monoclonal Antibody
Konak Mouse
Reaktivite Human
Konjugasyon Unconjugated
Modifikasyon Phosphorylated
İzotip Mouse IgG1
Klonalite Monoclonal
Form Liquid
Konsantrasyon Unconjugated
Saklama Aliquot and store at -20°C (valid for 12 months). Avoid freeze/thaw cycles.
Nakliye Ice bags.
Tampon Purified antibody in PBS with 0.05% sodium azide
Saflaştırma Affinity Purification
Antijen Bilgisi
Gen Adı phospho-Eralpha(Tyr-537)
Alternatif İsimler ESR1;ER; ESR; Era; ESRA; ESTRR; NR3A1
Gen Kimliği 2099
SwissProt Kimliği P03372
İmmünojen Synthesized peptide of human Eralpha(AA: 530-542 (Tyr-537)) expressed in E. Coli.
Uygulama
Uygulama ELISA,FC
Seyreltme Oranı ELISA 1:5000-1:20000,FC 1:200-1:400
Moleküler Ağırlık 66.2kDa
Araştırma Alanı
Arka Plan
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 promoter usage and alternative splicing result in dozens of transcript variants, but the full-length nature of many of these variants has not been determined.
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