Recombinant Human spumaretrovirus Pro-Pol polyprotein (pol), partial
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中文名稱:Recombinant Human spumaretrovirus Pro-Pol polyprotein(pol) ,partial,Yeast
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貨號:CSB-YP319688HQF
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規(guī)格:
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來源:Yeast
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其他:
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中文名稱:Recombinant Human spumaretrovirus Pro-Pol polyprotein(pol) ,partial,Yeast
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貨號:CSB-EP319688HQF
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規(guī)格:
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來源:E.coli
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其他:
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中文名稱:Recombinant Human spumaretrovirus Pro-Pol polyprotein(pol) ,partial,Yeast
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貨號:CSB-EP319688HQF-B
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規(guī)格:
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來源:E.coli
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共軛:Avi-tag Biotinylated
E. coli biotin ligase (BirA) is highly specific in covalently attaching biotin to the 15 amino acid AviTag peptide. This recombinant protein was biotinylated in vivo by AviTag-BirA technology, which method is BriA catalyzes amide linkage between the biotin and the specific lysine of the AviTag.
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其他:
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中文名稱:Recombinant Human spumaretrovirus Pro-Pol polyprotein(pol) ,partial,Yeast
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貨號:CSB-BP319688HQF
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規(guī)格:
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來源:Baculovirus
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其他:
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中文名稱:Recombinant Human spumaretrovirus Pro-Pol polyprotein(pol) ,partial,Yeast
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貨號:CSB-MP319688HQF
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規(guī)格:
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來源:Mammalian cell
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其他:
產(chǎn)品詳情
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純度:>85% (SDS-PAGE)
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基因名:pol
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Uniprot No.:
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別名:pol; Pro-Pol polyprotein; Pr125Pol) [Cleaved into: Protease/Reverse transcriptase/ribonuclease H; EC 2.7.7.49; EC 2.7.7.7; EC 3.1.26.4; EC 3.4.23.-; p87Pro-RT-RNaseH); Protease/Reverse transcriptase; EC 2.7.7.49; EC 2.7.7.7; EC 3.4.23.-; p65Pro-RT); Ribonuclease H; RNase H; EC 3.1.26.4); Integrase; IN; EC 2.7.7.-; EC 3.1.-.-; p42In)]
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種屬:Human spumaretrovirus (SFVcpz(hu)) (Human foamy virus)
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蛋白長度:Partial
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蛋白標(biāo)簽:Tag?type?will?be?determined?during?the?manufacturing?process.
The tag type will be determined during production process. If you have specified tag type, please tell us and we will develop the specified tag preferentially. -
產(chǎn)品提供形式:Lyophilized powder
Note: We will preferentially ship the format that we have in stock, however, if you have any special requirement for the format, please remark your requirement when placing the order, we will prepare according to your demand. -
復(fù)溶:We recommend that this vial be briefly centrifuged prior to opening to bring the contents to the bottom. Please reconstitute protein in deionized sterile water to a concentration of 0.1-1.0 mg/mL.We recommend to add 5-50% of glycerol (final concentration) and aliquot for long-term storage at -20℃/-80℃. Our default final concentration of glycerol is 50%. Customers could use it as reference.
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儲存條件:Store at -20°C/-80°C upon receipt, aliquoting is necessary for mutiple use. Avoid repeated freeze-thaw cycles.
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保質(zhì)期:The shelf life is related to many factors, storage state, buffer ingredients, storage temperature and the stability of the protein itself.
Generally, the shelf life of liquid form is 6 months at -20°C/-80°C. The shelf life of lyophilized form is 12 months at -20°C/-80°C. -
貨期:Delivery time may differ from different purchasing way or location, please kindly consult your local distributors for specific delivery time.Note: All of our proteins are default shipped with normal blue ice packs, if you request to ship with dry ice, please communicate with us in advance and extra fees will be charged.
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注意事項(xiàng):Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.
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Datasheet :Please contact us to get it.
靶點(diǎn)詳情
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功能:The aspartyl protease activity mediates proteolytic cleavages of Gag and Pol polyproteins. The reverse transcriptase (RT) activity converts the viral RNA genome into dsDNA in the cytoplasm, shortly after virus entry into the cell (early reverse transcription) or after proviral DNA transcription (late reverse transcription). RT consists of a DNA polymerase activity that can copy either DNA or RNA templates, and a ribonuclease H (RNase H) activity that cleaves the RNA strand of RNA-DNA heteroduplexes in a partially processive 3' to 5' endonucleasic mode. Conversion of viral genomic RNA into dsDNA requires many steps. A tRNA-Lys1,2 binds to the primer-binding site (PBS) situated at the 5'-end of the viral RNA. RT uses the 3' end of the tRNA primer to perform a short round of RNA-dependent minus-strand DNA synthesis. The reading proceeds through the U5 region and ends after the repeated (R) region which is present at both ends of viral RNA. The portion of the RNA-DNA heteroduplex is digested by the RNase H, resulting in a ssDNA product attached to the tRNA primer. This ssDNA/tRNA hybridizes with the identical R region situated at the 3' end of viral RNA. This template exchange, known as minus-strand DNA strong stop transfer, can be either intra- or intermolecular. RT uses the 3' end of this newly synthesized short ssDNA to perform the RNA-dependent minus-strand DNA synthesis of the whole template. RNase H digests the RNA template except for a polypurine tract (PPT) situated at the 5'-end and near the center of the genome. It is not clear if both polymerase and RNase H activities are simultaneous. RNase H probably can proceed both in a polymerase-dependent (RNA cut into small fragments by the same RT performing DNA synthesis) and a polymerase-independent mode (cleavage of remaining RNA fragments by free RTs). Secondly, RT performs DNA-directed plus-strand DNA synthesis using the PPT that has not been removed by RNase H as primer. PPT and tRNA primers are then removed by RNase H. The 3' and 5' ssDNA PBS regions hybridize to form a circular dsDNA intermediate. Strand displacement synthesis by RT to the PBS and PPT ends produces a blunt ended, linear dsDNA copy of the viral genome that includes long terminal repeats (LTRs) at both ends.; Integrase catalyzes viral DNA integration into the host chromosome, by performing a series of DNA cutting and joining reactions. This enzyme activity takes place after virion entry into a cell and reverse transcription of the RNA genome in dsDNA. The first step in the integration process is 3' processing. This step requires a complex comprising at least the viral genome, matrix protein, and integrase. This complex is called the pre-integration complex (PIC). The integrase protein removes 2 nucleotides from the 3' end of the viral DNA right (U5) end, leaving the left (U3) intact. In the second step, the PIC enters cell nucleus. This process is mediated through the integrase and allows the virus to infect both dividing (nuclear membrane disassembled) and G1/S-arrested cells (active translocation), but with no viral gene expression in the latter. In the third step, termed strand transfer, the integrase protein joins the previously processed 3' ends to the 5' ends of strands of target cellular DNA at the site of integration. It is however not clear how integration then proceeds to resolve the asymmetrical cleavage of viral DNA.
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亞細(xì)胞定位:[Integrase]: Virion. Host nucleus. Host cytoplasm.; [Protease/Reverse transcriptase/ribonuclease H]: Host nucleus. Host cytoplasm.
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