ChromoTek公司GFP-Trap抗体gta-20【现货】促销!1支仅售3484元,量大更有优惠!北京乐博生物公司
产品报价:3484元
更新时间:2014/8/14 9:13:17
产地:德国
品牌:ChromoTek
型号:500ul
厂商性质: 生产型,贸易型,服务型,
公司名称: 北京乐博生物科技有限公司
刘小姐 : (13621283223) (4006130504)
(联系我时,请说明是在来宝网上看到的,谢谢!)产品报价:3484元
更新时间:2014/8/14 9:13:17
产地:德国
品牌:ChromoTek
型号:500ul
厂商性质: 生产型,贸易型,服务型,
公司名称: 北京乐博生物科技有限公司
刘小姐 : (13621283223) (4006130504)
(联系我时,请说明是在来宝网上看到的,谢谢!)
ChromoTek公司GFP-Trap抗体gta-20【现货】促销!1支仅售3484元,量大更有优惠!北京乐博生物公司
活动有效期:2014-9-1 到 2014-12-31
One step一步法完成IP | Co-IP | ChIP,让您的免疫沉淀更简易,更便捷,更可靠,更专业
乐博生物代理ChromoTek,此商品 备有现货
Chromotek 产品
—— 北京乐博生物中国区授权代理
GFP-Trap_A
产品描述: 与agarose beads结合
particle size ~ 80 μm
存储缓冲液:20% EtOH
储存方法:室温运输,收到后4℃储存一年。请勿冰冻。
Nano-Traps?值得信赖的科研工具
Chromotek的Nano-Trap?基于alpaca的单域抗体片段(VHHS)
√ 小型
√ 极端稳定
√ 70℃仍保持稳定,functional in 2M NaCl or 0.5% SDS
√ 高亲和力
√ 解离常数范围在sub-nM内
√ 高特异性
GFP-Trap? 产品特点(高稳定性、高亲和力)
特异性结合绿色荧光蛋白的衍生物,如GFPS65T,YPF或EYFP,不与DsRed衍生蛋白结合。(见FAQs)
√ 多功能且功能强大的GFP融合蛋白生化实验
√ 缩短孵化时间(只需5-30min)
√ 从细胞提取物或细胞器中定量分离融合蛋白及结合(暂时性)因子
√ 超低的非特异性结合影响
√ 无污染的普通抗体的轻链与重链
√ 适用于染色质免疫沉淀(ChIP)
GFP-Trap? 产品应用:
√ 免疫沉淀 IP / Co-IP
√ 质谱分析
√ 酶活测定
√ 生物大分子相互作用/亲和力实验
√ 染色质免疫沉淀(ChIP,Chromatin Immunoprecipitation)
Nano-Traps reliable research reagents
NanoTraps are based on recombinant single domain antibody fragments (VHHS) derived from
alpaca coupled to monovalent matrices (agarose beads, magnetic particles or multiwell plates).
Our GFPTrap? / RFPTrap? are novel high quality tools for the fast, reliable and efficient onestep
isolation of fluorescent fusion proteins and their interacting factors.
Features
· Robust and versatile tools for biochemical analyses of fluorescent fusion proteins
· Short incubation times (5 – 30 min)
· Quantitative isolation of fusion proteins and transiently bound factors from various cell extracts
and organelles (from all organisms)
· Low unspecific binding
· No unspecific binding or contamination by heavy and light chains of conventional antibodies
GFP-Trap?
Our GFP-Trap? is a high quality GFP-binding protein coupled to a monovalent matrix (agarose beads,
magnetic particles or in 96-multiwell plates) for biochemical analysis of GFP fusion proteins and
their interacting partners.
The GFP-Trap? specifically binds to most common GFP derivates (see FAQs for a complete list).
No binding to red fluorescent proteins derived from DsRed can be detected.
GFP-Trap? features at a glance:
· Robust and versatile tool for biochemical analyses of GFP-fusion proteins
· Short incubation times (5 – 30 min)
· Quantitative isolation of fusion proteins and transiently bound factors from cell extracts or organelles
· Low unspecifi c binding
· No contaminating heavy and light chains of conventional antibodies
· Applicable in Chromatin Immunoprecipitation (ChIP)
Use GFP-Trap? for:
· Pulldowns/ Immunoprecipitations
· Co-IP
· Mass spectroscopy
· Enzyme activity measurements
· ChIP analysis
GFP-Trap_A
Description
GFP-Trap? coupled to agarose beads
particle size ~ 80 μm
Storage buffer
20% EtOH
Storage instructions
Shipped at ambient temperature. Upon receipt store at 4°C; stable for one
year. Do not freeze.
Latest references
Castello, A. Fischer, B. Eichelbaum, K. Horos, R. Beckmann, B. Strein, C. Davey, N. Humphreys, D. Preiss, T. Steinmetz, L. Krijgsveld, J Hentze, M. (2012). Insights into RNA Biology from an Atlas of Mammalian mRNA-Binding Proteins. Cell (PubMed)
Ries, J. Kaplan, C. Platonova, E. Eghidi, H. Ewers, H. (2012). A simple, versatile method for GFP-base super-resolution microscopy via nanobodies. Nat. Methods. 10.1038. (PubMed)
Pichler, G. Jack, A. Wolf, P. Hake, S. B. (2012). Versatile Toolbox for High Throughput Biochemical and Functional Studies with Fluorescent Fusion Proteins. PLoS One. 7: e36967. (PubMed)
Gudesblat, G. E. Schneider-Pizon, J. Betti, C. Mayerhofer, J. Vanhoutte, I. van Dongen, W. Boeren, S. Zhiponova, M. de Vries, S. Jonak, C. Russinova, E. (2012). SPEECHLESS integrates brassinosteroid and stomata signalling pathways. Nat Cell Biol. (PubMed)
Majumdar, A. Cesario, W. C. White-Grindley, E. Jiang, H. Ren, F. Khan, M. R. Li, L. Choi, E. M. Kannan, K. Guo, F. Unruh, J. Slaughter, B. Si, K. (2012). Critical role of amyloid-like oligomers of Drosophila Orb2 in the persistence of memory. Cell. 148: 515-29. (PubMed)
Metzger, T. Gache, V. Xu, M. Cadot, B. Folker, E. S. Richardson, B. E. Gomes, E. R. Baylies, M. K. (2012). MAP and kinesin-dependent nuclear positioning is required for skeletal muscle function. Nature. (PubMed)
Wild, P. Farhan, H. McEwan, D. G. Wagner, S. Rogov, V. V. Brady, N. R. Richter, B. Korac, J. Waidmann, O. Choudhary, C. Dotsch, V. Bumann, D. Dikic, I. (2011). Phosphorylation of the autophagy receptor optineurin restricts Salmonella growth. Science. 333: 228-33. (PubMed)
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