產品詳情
簡單介紹:
Anti-Phospho-Insulin Receptor Beta (Tyr1185)抗體產品質量穩定,實驗效果明顯,貨期快,價格優惠,歡迎垂詢訂購!我公司長期供應**組化抗體、WB抗體、**組化試劑盒和抗體試驗所需全部相關試劑、熒光標記抗體、單克隆抗體、多克隆抗體、各種標記的二抗IgG/IgM/IgD/IgA等科研實驗抗體。Anti-Phospho-Insulin Receptor Beta (Tyr1185)抗體用于**組化實驗,WB實驗,相應的標記抗體有HRP標記抗體,FITC標記,BIO等。
詳情介紹:
Rabbit Anti-Phospho-Insulin Receptor Beta (Tyr1185)
Cat. Number:
Anti-Phospho-Insulin Receptor Beta (Tyr1185)抗體KL-5453R
Quantity size:
0.1ml
Concentration:
1mg/ml Buffer = 0.01M TBS(pH7.4) with 1% BSA, 0.03% Proclin300 and 50% Glycerol.
Background:
The human insulin receptor is a heterotetrameric membrane glycoprotein consisting of disulfide linked subunits in a beta-alpha-alpha-beta configuration. The beta subunit (95 kDa) possesses a single transmembrane domain, whereas the alpha subunit (135 kDa) is completely extracellular. The insulin receptor exhibits receptorAnti-Phospho-Insulin Receptor Beta (Tyr1185)抗體 tyrosine kinase (RTK) activity. RTKs are single pass transmembrane receptors that possess intrinsic cytoplasmic enzymatic activity, catalyzing the transfer of the gamma phosphate of ATP to tyrosine residues in protein substrates. RTKs are essential components of signal transduction pathways that affect cell proliferation, differentiation, migration and metabolism.
Included in this large protein family are the insulin receptor and the receptors for growth factors such as epidermal growth factor, fibroblast growth factor and vascular endothelial growth factor. Receptor activation occurs through ligand binding, which facilitates receptor dimerization and autophosphorylation of specific tyrosine residues in the cytoplasmic portion. The interaction of insulin with the alpha subunit of the insulin receptor activates the protein tyrosine kinase of the beta subunit, which then undergoes an autophosphorylation that increases its tyrosine kinase activity. Three adapter proteins, IRS1, IRS2 and Shc, become phosphorylated on tyrosine residues following insulin receptor activation. These three phosphorylated proteins then interact with SH2 domain containing signaling proteins.
Included in this large protein family are the insulin receptor and the receptors for growth factors such as epidermal growth factor, fibroblast growth factor and vascular endothelial growth factor. Receptor activation occurs through ligand binding, which facilitates receptor dimerization and autophosphorylation of specific tyrosine residues in the cytoplasmic portion. The interaction of insulin with the alpha subunit of the insulin receptor activates the protein tyrosine kinase of the beta subunit, which then undergoes an autophosphorylation that increases its tyrosine kinase activity. Three adapter proteins, IRS1, IRS2 and Shc, become phosphorylated on tyrosine residues following insulin receptor activation. These three phosphorylated proteins then interact with SH2 domain containing signaling proteins.
Also known as:
Insulin Receptor (phospho Y1185);Anti-Phospho-Insulin Receptor Beta (Tyr1185)抗體 Insulin Receptor (phospho Try1185); CD 220; CD220; CD220 antigen; HHF 5; HHF5; HIR B; INSR; INSR; Insulin receptor; Insulin receptor subunit beta; IR; INSR_HUMAN.
Specificity:
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Rabbit Polyclonal IgG, affinity purified by Protein A.
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Reacts with: Human, Mouse, Rat, Chicken, Dog, Pig, Cow, Rabbit, .
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Immunogen: KLH conjugated Synthesised phosphopeptide derived from human.
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Predicted Molecular Weight: 68kDa.Anti-Phospho-Insulin Receptor Beta (Tyr1185)抗體
Storage:
Shipped at 4℃, Store at -20℃ (Avoid repeated freeze/thaw cycles).
Application:
WB=1:100-500 ELISA=1:500-1000 IHC-P=1:100-500 IHC-F=1:100-500 Flow-Cyt=1:100-500 IF=1:100-500 Anti-Phospho-Insulin Receptor Beta (Tyr1185)抗體
Not yet tested in other applications.
Optimal working dilutions must be determined by the end user.
Not yet tested in other applications.
Optimal working dilutions must be determined by the end user.
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