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EphB2 (D2X2I) Rabbit mAb



商城價: 登錄可見

品    牌:CST/賽信通

貨    號:83029T

規    格:

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商品名稱 規格 代理級別 價格 運費 供應商 購買
EphB2 (D2X2I) Rabbit mAb
交貨周期:現貨
20 μl 經銷
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北京敏泰元科技有限公司
庫存:20
CST 83029T EphB2(D2X2I) Rabbit mAb
交貨周期:部分現貨,期貨3-4周左右,優質售后
20μl 經銷
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上海優寧維生物科技股份有限公司
庫存:999

  • 產品詳情

應用:W, IP, IHC-P, IF-IC
The ephrin receptor B2 (EphB2) is an ephrin family receptor tyrosine kinase that plays an important role in regulating growth and development of multiple tissues and organs (1,2). The EphB2 transmembrane receptor protein contains a kinase domain, a PDZ motif, and a SAM domain within a conserved cytoplasmic domain. A ligand binding domain, a cysteine-rich domain, and fibronectin type III repeats comprise the conserved EphB2 extracellular domain (3). EphB2 binds with high affinity to ephrin B ligands, and to some ephrin A proteins, to initiate bidirectional signaling between neighboring cells (1,2). Upon binding, EphB2-Ephrin B2 dimers form a heterotetramer and position the receptor-ligand complex on the cell membrane to facilitate bidirectional signal transduction (3). In addition to associating with ephrin ligands, EphB2 also regulates a number of biological processes through interaction with focal adhesion kinase (FAK), NMDA receptor (NMDAR), the Rac1 guanine nucleotide exchange factor Tiam1, and p21-activated kinase (PAK1) (4-7). While some studies support a role for EphB2 as a pro-oncogenic kinase, other research suggests that EphB2 acts as a tumor suppressor (1,2,4,8).

Supporting Data

REACTIVITY H M R
SENSITIVITY Endogenous
MW (kDa) 130
Source/Isotype Rabbit IgG

Application Key:

  • W-Western
  • IP-Immunoprecipitation
  • IHC-Immunohistochemistry
  • ChIP-Chromatin Immunoprecipitation
  • IF-Immunofluorescence
  • F-Flow Cytometry
  • E-P-ELISA-Peptide

Species Cross-Reactivity Key:

  • H-Human
  • M-Mouse
  • R-Rat
  • Hm-Hamster
  • Mk-Monkey
  • Vir-Virus
  • Mi-Mink
  • C-Chicken
  • Dm-D. melanogaster
  • X-Xenopus
  • Z-Zebrafish
  • B-Bovine
  • Dg-Dog
  • Pg-Pig
  • Sc-S. cerevisiae
  • Ce-C. elegans
  • Hr-Horse
  • All-All Species Expected

Product Usage Information

Application Dilution
Western Blotting 1:1000
Immunoprecipitation 1:50
Immunohistochemistry (Paraffin) 1:200
Immunofluorescence (Immunocytochemistry) 1:600

Storage

Supplied in 10 mM sodium HEPES (pH 7.5), 150 mM NaCl, 100 μg/ml BSA, 50% glycerol and less than 0.02% sodium azide. Store at –20°C. Do not aliquot the antibody.

Specificity / Sensitivity

EphB2 (D2X2I) Rabbit mAb recognizes endogenous levels of total EphB2 protein.

Species Reactivity:

Human, Mouse, Rat

Source / Purification

Monoclonal antibody is produced by immunizing animals with a synthetic peptide corresponding to residues surrounding Ala573 of human EphB2 protein.

Background

The ephrin receptor B2 (EphB2) is an ephrin family receptor tyrosine kinase that plays an important role in regulating growth and development of multiple tissues and organs (1,2). The EphB2 transmembrane receptor protein contains a kinase domain, a PDZ motif, and a SAM domain within a conserved cytoplasmic domain. A ligand binding domain, a cysteine-rich domain, and fibronectin type III repeats comprise the conserved EphB2 extracellular domain (3). EphB2 binds with high affinity to ephrin B ligands, and to some ephrin A proteins, to initiate bidirectional signaling between neighboring cells (1,2). Upon binding, EphB2-Ephrin B2 dimers form a heterotetramer and position the receptor-ligand complex on the cell membrane to facilitate bidirectional signal transduction (3). In addition to associating with ephrin ligands, EphB2 also regulates a number of biological processes through interaction with focal adhesion kinase (FAK), NMDA receptor (NMDAR), the Rac1 guanine nucleotide exchange factor Tiam1, and p21-activated kinase (PAK1) (4-7). While some studies support a role for EphB2 as a pro-oncogenic kinase, other research suggests that EphB2 acts as a tumor suppressor (1,2,4,8).

  1. Pasquale, E.B. (2008) Cell 133, 38-52.
  2. Klein, R. (2009) Nat Neurosci 12, 15-20.
  3. Himanen, J.P. et al. (2001) Nature 414, 933-8.
  4. Wang, S.D. et al. (2012) Oncogene 31, 5132-43.
  5. Nolt, M.J. et al. (2011) J Neurosci 31, 5353-64.
  6. Tolias, K.F. et al. (2007) Proc Natl Acad Sci U S A 104, 7265-70.
  7. Srivastava, N. et al. (2013) Mol Cell Neurosci 52, 106-16.
  8. Blume-Jensen, P. and Hunter, T. (2001) Nature 411, 355-65.

友情鏈接 :  中國科學院 國科控股 喀斯瑪控股有限公司 中科海外人才創業園

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