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產(chǎn)品資料

pcDNA6.2/cLumio-DEST

如果您對該產(chǎn)品感興趣的話,可以
產(chǎn)品名稱: pcDNA6.2/cLumio-DEST
產(chǎn)品型號:
產(chǎn)品展商: HZbscience
產(chǎn)品文檔: 無相關(guān)文檔

簡單介紹

pcDNA6.2/cLumio-DEST的各批次質(zhì)粒菌株發(fā)貨前均經(jīng)過嚴格的多重驗證,如存在質(zhì)量問題,請在收到產(chǎn)品的三個月內(nèi)通知我司。收到pcDNA6.2/cLumio-DEST后請短暫離心,取2μl轉(zhuǎn)化至對應感受態(tài)中,挑取單克隆重新提取質(zhì)粒后使用。


pcDNA6.2/cLumio-DEST  的詳細介紹

pcDNA6.2/cLumio-DEST載體基本信息

載體名稱: pcDNA6.2/cLumio-DEST
質(zhì)粒類型: 哺乳動物表達載體;cDNA表達載體;熒光報告載體;Gateway載體
高拷貝/低拷貝: 高拷貝
克隆方法: Gateway
啟動子: CMV
載體大小: 6809 bp
5' 測序引物及序列: T7 Forward: 5’-TAATACGACTCACTATAGGG-3’
3' 測序引物及序列: BGH Reverse: 5-TAGAAGGCACAGTCGAGG-3
載體標簽: V5 Epitope(N-端), Lumio(C-端)
載體抗性: 氨芐青霉素
篩選標記: Blasticidin
克隆菌株: DB3.1
宿主細胞(系): 常規(guī)細胞系,如293、Hela等
備注: pcDNA6.2/cLumio-DEST載體是cDNA的表達與克隆載體;
表達C-端含lumio標簽的融合蛋白,可以在體內(nèi)或膠內(nèi)直接進行檢測;
與傳統(tǒng)熒光報告 基因相比,報告蛋白更小,檢測方法跟簡便高效;
tetracysteine Lumio tag (Cys-Cys-Pro-Gly-Cys-Cys)。
產(chǎn)品目錄號: V864-20
穩(wěn)定性: 瞬表達 或 穩(wěn)表達
組成型/誘導型: 組成型
病毒/非病毒: 非病毒

pcDNA6.2/cLumio-DEST載體質(zhì)粒圖譜和多克隆位點信息

pcDNA6.2-cLumio-DEST載體圖譜



pcDNA6.2-cLumio-DEST 多克隆位點

pcDNA6.2-cLumio-DEST 載體特征1
pcDNA6.2-cLumio-DEST 載體特征2

pcDNA6.2/cLumio-DEST載體簡介

載體描述: The Mammalian Lumio Gateway Vector Kits contain Gateway-adapted destination vectors designed for use with the Lumio Technology. The pcDNA6.2/Lumio-DEST vectors supplied with each kit facilitate in vivo fluorescence labeling and detection of recombinant proteins when used with a Lumio In-Cell Labeling Kit. 載體特征: The pcDNA6.2/cLumio-DEST and pcDNA6.2/nLumio-DEST vectors contain the following elements:
 Human cytomegalovirus immediate-early (CMV) promoter/enhancer for high-level expression in a wide range of mammalian cells
 Lumio tag for C-terminal (pcDNA6.2/cLumio-DEST) or N-terminal (pcDNA6.2/nLumio-DEST) fusion to the gene of interest for fluorescence detection
 Two recombination sites, attR1 and attR2, downstream of the CMV promoter for recombinational cloning of the gene of interest from an entry clone
 Chloramphenicol resistance gene located between the two attR sites for counterselection
 The ccdB gene located between the two attR sites for negative selection
 The Herpes Simplex Virus thymidine kinase polyadenylation signal for proper termination and processing of the recombinant transcript
 f1 intergenic region for production of single-strand DNA in F plasmidcontaining E. coli
 SV40 early promoter and origin for expression of the Blasticidin resistance gene and stable propagation of the plasmid in mammalian hosts expressing the SV40 large T antigen 
 Blasticidin resistance gene for selection of stable cell lines
 The pUC origin for high copy replication and maintenance of the plasmid in E. coli
 The ampicillin resistance gene for selection in E. coli Gateway 技術(shù)簡介: The Gateway Technology is a universal cloning method that takes advantage of the site-specific recombination properties of bacteriophage lambda (Landy, 1989) to provide a rapid and highly efficient way to move your gene of interest into multiple vector systems. To express your gene of interest in mammalian cells using Gateway Technology, simply:
1. Clone your gene of interest into a Gateway entry vector to create an entry clone.
2. Generate an expression clone by performing an LR recombination reaction between the entry clone and a Gateway destination vector (e.g. pcDNA6.2/cLumio-DEST or pcDNA6.2/nLumio-DEST).
3. Transfect your expression clone into the cell line of choice for transient or stable expression of your gene of interest. Lumio 技術(shù)的優(yōu)勢: The Lumio System is based on the FlAsH (Fluorescein Arsenical Hairpin) technology which uses biarsenical labeling reagents to bind and detect proteins containing a tetracysteine motif (i.e. Lumio tag) (Griffin et al., 1998). Using the Lumio Technology and the Lumio In-Cell Labeling Kits for fluorescence labeling of recombinant proteins provides the following advantages:
 Small size of the Lumio tag (6 amino acids, 585 Da) is less likely to interfere with the structure or biological activity of the protein of interest
 Lumio Labeling Reagents are membrane-permeable and readily cross the cell membrane, allowing labeling and detection of recombinant proteins in live mammalian cells
 Lumio Labeling Reagents bind the Lumio tag with high specificity and high affinity (nanomolar or lower dissociation constant), allowing targeted labeling of the protein of interest
 Lumio Labeling Reagents become strongly fluorescent only upon binding the Lumio tag, allowing specific detection of Lumio-tagged proteins Lumio 系統(tǒng)的組成: The Lumio System consists of two major components:
 The tetracysteine Lumio tag (Cys-Cys-Pro-Gly-Cys-Cys) in the pcDNA6.2/Lumio-DEST vector. When fused to a gene of interest, the Lumio tag allows the expressed fusion protein to be specifically recognized by a biarsenical labeling reagent. For more information on the tetracysteine motif, see below.
 A biarsenical labeling reagent, Lumio Green or Lumio Red, which becomes fluorescent upon binding to recombinant proteins containing the Lumio tag.
The Lumio Green and Lumio Red Labeling Reagents are supplied precomplexed to the dithiol EDT (1,2-ethanedithiol) which stabilizes and solubilizes the biarsenic reagents. 

Tetracysteine Motif
The Lumio Reagents bind a tetracysteine motif consisting of Cys-Cys-Xaa-XaaCys-Cys where Cys equals cysteine and Xaa equals any amino acid other than cysteine. This motif is rarely seen in naturally occurring proteins allowing specific fluorescence labeling of recombinant proteins fused to the Lumio tag. In the Lumio System, the optimized Cys-Cys-Pro-Gly-Cys-Cys tetracysteine motif is used as this motif has been shown to have a higher affinity for and more rapid binding to biarsenic compounds as well as enhanced stability compared to other characterized motifs (Adams et al., 2002).
 
Lumio Green Detection Kit
For sensitive and specific in-gel detection of Lumio-tagged fusion proteins, we recommend the Lumio Green Detection Kit available from Invitrogen (Catalog no. LC6090). The Lumio Green Detection Kit enables immediate visualization of Lumio-tagged proteins in polyacrylamide gels using a UV transilluminator or a visible light laser-based scanner and without the need for staining or western blotting. In addition, the BenchMark Fluorescent Protein Standard (Catalog no.LC5928) allows you to easily visualize molecular weight ranges of proteins labeled with Lumio Green Detection Reagent. 實驗要點: Generating an Entry Clone
Introduction To recombine your gene of interest into pcDNA6.2/cLumio-DEST or pcDNA6.2/nLumio-DEST, you will need an entry clone containing the gene of interest. Many entry vectors including pENTR/D-TOPO (Catalog no. K2400-20) are available from Invitrogen to facilitate generation of entry clones.

Tag-On-Demand System
The pcDNA6.2/cLumio-DEST vector is compatible with the Tag-OnDemand System which allows expression of both native and C-terminallytagged recombinant protein from the same expression construct.
The System is based on stop suppression technology originally developed by RajBhandary and colleagues (Capone et al., 1985) and consists of a recombinant adenovirus expressing a tRNAser suppressor. When an expression vector encoding a gene of interest with the TAG (amber stop) codon is transfected into mammalian cells, the stop codon will be translated as serine, allowing translation to continue and resulting in production of a C-terminally-tagged fusion protein.

If you wish to express a human or mouse gene of interest, we recommend using an Ultimate Human ORF (hORF) or Ultimate Mouse ORF (mORF) Clone available from Invitrogen. Each Ultimate ORF Clone is a fully sequenced clone provided in a Gateway entry vector that is ready-to-use in an LR recombination reaction with pcDNA6.2/cLumio-DEST. In addition, each clone contains a TAG stop codon, making it fully compatible for use in the Tag-On-Demand System. 

Points to Consider for pcDNA6.2/nLumio-DEST
pcDNA6.2/nLumio-DEST allows expression of recombinant proteins with an N-terminal peptide containing the Lumio and V5 epitope tags and contains an ATG initiation codon within the context of a Kozak consensus sequence. To include the Lumio and V5 epitope tags, your insert in the entry clone should:
 not contain a Kozak initiation sequence
 be in frame with the Lumio and V5 epitope tags after recombination
 contain a stop codon 

pcDNA6.2/cLumio-DEST載體序列

hz-9167R RNF86  環(huán)指蛋白86
hz-9168R RING2/RNF2  環(huán)指蛋白2抗體
hz-9169R PCGF3/RNF3  環(huán)指蛋白3抗體
hz-9170R RNF40  環(huán)指蛋白40抗體
hz-9171R RNF44  環(huán)指蛋白44抗體
hz-9172R RNF6  環(huán)指蛋白6抗體
hz-9173R RNF8  環(huán)指蛋白8抗體
hz-9174R TRIM3/RNF22  環(huán)指蛋白22抗體
hz-9175R RNF10  環(huán)指蛋白10抗體
hz-9176R RNF11  環(huán)指蛋白11抗體
hz-9177R RNF12  環(huán)指蛋白12抗體
hz-9178R MTM1/Myotubularin  肌微管素1抗體
hz-9179R MLF1/2/3  髓細胞性白血病蛋白1抗體
hz-9180R RSL1D1  細胞衰老抑制基因蛋白抗體
hz-9181R Repetin  中間絲相關(guān)蛋白抗體
hz-9182R VGLL1  轉(zhuǎn)錄輔助因子退變樣蛋白1抗體
hz-9183R VGLL2  轉(zhuǎn)錄輔助因子退變樣蛋白2抗體
hz-9184R VGLL3  轉(zhuǎn)錄輔助因子退變樣蛋白3抗體
hz-9185R VGLL4  轉(zhuǎn)錄輔助因子退變樣蛋白4抗體
hz-9186R SIP1  Smad蛋白相互作用蛋白1抗體
hz-9187R PTPH1/PTPN3  蛋白酪氨酸磷酸酶H1抗體
hz-9188R PROCA1  Cyclin A1相互作用蛋白抗體
hz-9189R ZNF354C  鋅指蛋白354C抗體
hz-9190R SLFN14  Schlafen家族14抗體
hz-9191R ShzCAP3/LNX3  ShzCAP3蛋白抗體

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