ChromoTek公司GFP-Trap抗體、gta-20現(xiàn)貨促銷!
瀏覽次數(shù):7408 發(fā)布日期:2015-9-7
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ChromoTek公司GFP-Trap抗體 gta-20現(xiàn)貨促銷!量大優(yōu)惠更多!
BioTNT-ChromoTek公司專業(yè)代理商!
gta-2 小包裝優(yōu)惠銷售! GFP-Booster_atto488-TS 小包裝申請試用!
GFP antibody, rat monoclonal 20ug 小包裝優(yōu)惠促銷!
現(xiàn)貨促銷產(chǎn)品:
品牌 |
貨號 |
品名 |
規(guī)格 |
優(yōu)惠促銷 |
備注 |
Chromo tek |
gta-20 |
GFP-Trap®, coupled to agarose |
20 rxns |
2750 |
現(xiàn)貨 |
Chromo tek |
gta-2 |
GFP-Trap®, coupled to agarose |
2 rxns |
450 |
現(xiàn)貨 |
Chromo tek |
gba488-TS |
GFP-Booster_atto488-TS試用 |
1ug/200ul |
試用申請 |
現(xiàn)貨 |
Chromo tek |
3h9 |
GFP antibody, rat monoclonal |
20ug |
1000 |
現(xiàn)貨 |
BioTNT 聯(lián)系方式: |
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One step一步法完成IP | Co-IP | ChIP,讓您的免疫沉淀更簡易,更便捷,更可靠,更專業(yè)
GFP-Trap_A —— 值得信賴的科研工具:
Nano-Trap:與agarose beads或者magnetic beads結(jié)合,在免疫沉淀或蛋白質(zhì)相互作用的實驗中,可高效抓取或純化GFP或RPF融合蛋白。 (優(yōu)點:三好三多)
優(yōu)點一:抗體好---------Nano-Traps采用的抗體是基于alpaca的單域抗體片段(VHHS);具有分子量小(15Kda)、極端穩(wěn)定(70℃仍保持穩(wěn)定),高親和力(高特異性性結(jié)合GFP蛋白),無普通抗體輕鏈與重鏈污染等一系列優(yōu)點等優(yōu)點;GFP抗體可以特異性結(jié)合綠色熒光蛋白的衍生物,如eGFP, wtGFP, GFP S65T,TagGFP,不與RFP衍生蛋白結(jié)合。
優(yōu)點二:形式好-------抗體結(jié)合了agarose beads(瓊脂糖珠子)或者magnetic beads(磁珠),在IP實驗,COIP ,pulldown,Chip實驗中可以直接取代特異性GFP 抗體+proteinA/G 瓊脂糖珠子;
優(yōu)點三:效果好------孵化時間短(只需5-30min),能夠更好與結(jié)合,從細胞提取物或細胞器中定量分離GFP融合蛋白及結(jié)合因子
優(yōu)點四:實驗應(yīng)用多:被廣泛用于免疫沉淀、質(zhì)譜分析、酶活測定、生物大分子相互作用/親和力實驗、染色質(zhì)免疫沉淀(ChIP)、蛋白質(zhì)相互作用分析;
優(yōu)點五:產(chǎn)品多:有GFP Trap,RFP Trap,GST Trap,Dnmt1-Trap;Mk2-Trap;P53-Trap;Mdm4/ HdmX-Trap NEW!更多Trap 新品,給您提供更多的科研工具!GFP,RFP,GST Trap作為標(biāo)簽蛋白的特異性純化方法,Dnmt1-Trap;Mk2-Trap;P53-Trap;Mdm4/ HdmX-Trap 是用于純化目的蛋白。
優(yōu)點六:樣品類型多:mammalian cells(哺乳細胞);tissues/ organisms(組織/器官樣本);bacteria(細菌);yeast (酵母);plants (植物樣本)
產(chǎn)品描述: 與agarose beads結(jié)合 particle size ~ 80 µm
存儲緩沖液:20% EtOH
儲存方法:室溫運輸,收到后4℃儲存一年。請勿冰凍。
GFP-Booster_atto488-TS:
Nano-booster是利用Atto公司的優(yōu)質(zhì)熒光素共價結(jié)合到特異性GFP抗體上;當(dāng)GFP 融合蛋白信號比較弱的時候,或者熒光蛋白變性后,具有再激活的作用。
試用裝申請中;
3h9 GFP antibody, rat monoclonal 20ug
小包裝產(chǎn)品,完成您的IP western blot 實驗!
參考文獻:
- 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)