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Insulin Receptor (13M3) Rabbit Monoclonal Antibody
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原料试剂 研发实验室
价格
¥2250.00
品牌 EnkiLife/恩玑
地区 中国,湖北省,武汉市
货号 AMRe12640
产地 国产
选择规格
100μL
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EnkiLife
武汉EnkiLife-log科技有限公司
武汉
营业执照已审核
武汉恩玑生命科技有限公司(EnkiLife)是一家聚焦细胞生物学和免疫学的生物技术企业,致力于为生命科学行业的科研工作者提供高质量的产品和卓越的客户服务。 EnkiLife的产品线包括细胞系、原代细胞、培养基、血清、细胞检测试剂盒、蛋白、抗体、ELISA试剂盒、生化试剂盒等,并提供技术服务与定制开发,全方位满足生命科学行业需求,为您的实验保驾护航! EnkiLife的技术团队凭借在生物科学领域的丰富经验和专业知识,已在公司内部构建了一套完善的技术平台,涵盖细胞培养及检测、蛋白表达、抗体制备以及免疫学等多个关键领域。我们始终秉承严格的质量管理体系,优化生产流程,确保为客户提供高效、精准的技术支持。 展望未来,EnkiLife将继续致力于技术创新,不断丰富和完善我们的技术平台,以更好地满足客户需求,同时不断提升服务水平,确保客户体验的持续优化。我们期待与更多的全球科研工作者携手合作,共同推动生命科学领域的进步与发展。
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产品规格 图文详情 技术文档
产品规格
品牌名称
EnkiLife/恩玑
货号
AMRe12640
国产/进口
国产
规格
100μL
图文详情

产品概述

产品名称(Product Name)

Insulin Receptor (13M3) Rabbit Monoclonal Antibody

描述(Description)

Rabbit Monoclonal Antibody

宿主(Host)

Rabbit

应用(Application)

WB

种属反应性(Reactivity)

Human

 

产品性能

偶联物(Conjugation)

Unconjugated

修饰(Modification)

Unmodified

同种型(Isotype)

IgG

克隆(Clonality)

Monoclonal

形式(Form)

Liquid

存放说明(Storage)

Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze/thaw cycles.

储存溶液(Buffer)

Supplied in 50mM Tris-Glycine(pH 7.4), 0.15M NaCl, 40%Glycerol, 0.01% New type preservative N and 0.05% BSA.

纯化方式(Purification)

Affinity purification

 

免疫原

免疫原信息(Immunogen Information)

0

基因名(Gene Name)

INSR

别名(Alternative Names)

CD220; HHF5; human insulin receptor; Insr; Insulin receptor subunit beta; IR 1; IR;

基因ID(Gene ID)

3643

蛋白ID(SwissProt ID)

P06213

 

产品应用

稀释比(Dilution Ratio)

WB: 1:1000

蛋白分子量(Molecular Weight)

156kDa

 

研究背景

Insulin Receptor is a transmembrane receptor tyrosine kinase that is widely expressed in many cell lines and cell types within fetal and postnatal tissues; Insulin binding to IR induces phosphorylation of intracellular tyrosine kinase domains and recruitment of multiple SH2 and SH3 domain-containing intracellular proteins that serve as signaling intermediates for pleiotropic effects of insulin. Receptor tyrosine kinase which mediates the pleiotropic actions of insulin. Binding of insulin leads to phosphorylation of several intracellular substrates, including, insulin receptor substrates (IRS1, 2, 3, 4), SHC, GAB1, CBL and other signaling intermediates. Each of these phosphorylated proteins serve as docking proteins for other signaling proteins that contain Src-homology-2 domains (SH2 domain) that specifically recognize different phosphotyrosine residues, including the p85 regulatory subunit of PI3K and SHP2. Phosphorylation of IRSs proteins lead to the activation of two main signaling pathways: the PI3K-AKT/PKB pathway, which is responsible for most of the metabolic actions of insulin, and the Ras- MAPK pathway, which regulates expression of some genes and cooperates with the PI3K pathway to control cell growth and differentiation. Binding of the SH2 domains of PI3K to phosphotyrosines on IRS1 leads to the activation of PI3K and the generation of phosphatidylinositol-(3, 4, 5)-triphosphate (PIP3), a lipid second messenger, which activates several PIP3-dependent serine/threonine kinases, such as PDPK1 and subsequently AKT/PKB. The net effect of this pathway is to produce a translocation of the glucose transporter SLC2A4/GLUT4 from cytoplasmic vesicles to the cell membrane to facilitate glucose transport. Moreover, upon insulin stimulation, activated AKT/PKB is responsible for: anti-apoptotic effect of insulin by inducing phosphorylation of BAD; regulates the expression of gluconeogenic and lipogenic enzymes by controlling the activity of the winged helix or forkhead (FOX) class of transcription factors. Another pathway regulated by PI3K-AKT/PKB activation is mTORC1 signaling pathway which regulates cell growth and metabolism and integrates signals from insulin. AKT mediates insulin- stimulated protein synthesis by phosphorylating TSC2 thereby activating mTORC1 pathway. The Ras/RAF/MAP2K/MAPK pathway is mainly involved in mediating cell growth, survival and cellular differentiation of insulin. Phosphorylated IRS1 recruits GRB2/SOS complex, which triggers the activation of the Ras/RAF/MAP2K/MAPK pathway. In addition to binding insulin, the insulin receptor can bind insulin-like growth factors (IGFI and IGFII). Isoform Short has a higher affinity for IGFII binding. When present in a hybrid receptor with IGF1R, binds IGF1. PubMed:12138094 shows that hybrid receptors composed of IGF1R and INSR isoform Long are activated with a high affinity by IGF1, with low affinity by IGF2 and not significantly activated by insulin, and that hybrid receptors composed of IGF1R and INSR isoform Short are activated by IGF1, IGF2 and insulin. In contrast, PubMed:16831875 shows that hybrid receptors composed of IGF1R and INSR isoform Long and hybrid receptors composed of IGF1R and INSR isoform Short have similar binding characteristics, both bind IGF1 and have a low affinity for insulin. In adipocytes, inhibits lipolysis (By similarity).

 

研究领域

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