抗人EphB4/HTK鼠单抗
产品名称: 抗人EphB4/HTK鼠单抗
英文名称: EphB4 EphB4 HTK MYK1 TYRO11 Ephrin-B4 EphrinB4
产品编号: 10235-MM03
产品价格: null
产品产地: 北京
品牌商标: 义翘神州(SinoBiologi
更新时间: null
使用范围: western blot
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官方网址:http://www.sinobiological.cn/EphB4-Antibody-g-1772.html
Ephrin Type-B Receptor 4 ( EphB4 / EPHB4 / HTK ) Antibody Datasheet
EphB4 / EPHB4 / HTK抗体产品信息
免疫原 : Recombinant human EphB4 protein ( Catalog#10235-H08H )
克隆号 :
11F11G1B1
Ig Type : Mouse IgG1
缓冲液 : 0.2 μm filtered solution in PBS with 5% trehalose 制备方法 : This antibody was produced from a hybridoma resulting from the fusion of a mouse myeloma with B cells obtained from a mouse immunized with purified, human cell-derived, recombinant human EphB4 / HTK extracellular domain ( rhEphB4; Catalog#10235-H08H; NP_004435.3; Met 1-Ala 539 ). The IgG fraction of the cell culture supernatant was purified by Protein A affinity chromatography.
EphB4 / EPHB4 / HTK抗体使用指南
特异性 :
Human EphB4 / HTK
No cross-reactivity with human cell lysate ( 293 cell line ) in WB and ELISA. Western blot : This antibody can be used at 1 - 2 ug/mL with the appropriate secondary reagents to detect EphB4 in WB. Using a DAB detection system, the detection limit for EphB4 is approximately 20 ng/lane under non-reducing conditions and 4 ng/lane under reducing conditions. 储存方法 : This antibody can be stored at 2℃-8℃ for 1 month without detectable loss of activity. Antibody products are stable for twelve months from date of receipt when stored at -20℃ to -70℃. Preservative-Free.
Sodium azide is recommended to avoid contamination (final concentration 0.05%-0.1%). It is toxic to cells and should be disposed of properly. Avoid repeated freeze-thaw cycles.Image : Western blot – EphB4 / HTK antibody
The detection limit for human EphB4 is approximately 4ng/lane under reducing conditions
The detection limit for human EphB4 is approximately 20ng/lane under non-reducing conditions
EphB4 / EPHB4 / HTK Antibody Related Products &Topics
EphB4 Antibody 相关研究领域:
Enzyme>>Protein Kinase>>Receptor Tyrosine Kinase>>EphB4
Neuroscience>>Axon Guidance>>Ephrin & Eph Receptor>>EphB4
Stem Cell>>Hematopoietic Stem Cell (HSC)>>Hemangioblast>>Hemangioblast Marker>>EphB4
Cancer>>Growth Factor & Receptor>>Ephrin & Eph Receptor>>EphB4
Cancer>>Growth Factor & Receptor>>Receptor Tyrosine Kinase>>EphB4
蛋白:
Molecule Species Description //For Detailed Info.------CLICK! Cat No EphB4 Human EphB4/Fc Protein, Recombinant 10235-H02H EphB4 Human EphB4 Protein, Recombinant 10235-H08H EphB4 Human EphB4 Protein, Recombinant 10235-HCCH 抗体:
Molecule Application Description //For Detailed Info.------CLICK! Cat No Human
EphB4WB Mouse Monoclonal Antibody 10235-MM03 Human
EphB4ELISA Mouse Monoclonal Antibody 10235-MM04 Human
EphB4WB, ELISA Rabbit Monoclonal Antibody 10235-RM02 Human
EphB4ELISA Rabbit Polyclonal Antibody 10235-RP01 Human
EphB4WB, ELISA Rabbit Polyclonal Antibody (Antigen Affinity Purified) 10235-RP05 EphB4 / EPHB4 / HTK Antibody Background
EphB4, also known as Htk, Myk-1, is a member of the Eph family of receptor tyrosine kinases (RTK). The Ephs are divided into two classes based on their extracellular structure and ligand specificity, and the transmembrane receptor binding preferentially to ephrin-B ligands is referred to as EphB. Sharing common structure organization, all Eph receptors contain an N-terminal Ig-like domain, a cysteine-rich region and two fibronectin type III domains within the ECD, as well as the typical cytoplasmic tyrosine kinase domain. EphB4 and its ligand ephrin-B2 are specifically expressed on venous and arterial endothelial cells, respectively, and play an essential role in vascular development via bidirectional signals. The forward EphB4 signaling inhibits cell adhesion, chemotaxis, angiogenesis, and tumor growth. In contrast, the reverse Ephrin-B2 signaling exerts the opposite effect. It has been reported that aberrant expression of EphB4 is associated with prostate cancer and highly malignant breast cancers, and accordingly, EphB4 has potential applications as a therapeutic candidate.
参考文献
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2. Noren, NK. et al., 2004, Proc. Natl. Acad. Sci. 101: 5583-8.
3. Murai, KK. et al., 2003, J. Cell. Sci. 116: 2823-32.
4. Noren, NK. et al., 2006, Nat. Cell. Biol. 8: 815-25.
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6. Kertesz, N. et al., 2006, Blood. 107: 2330-38.