2×TransStart FastPfu PCR SuperMix (+dye)

Referencia AS221-12

embalaje : 5×1ml

Marca : TransGen Biotech

Contact local distributor :


Teléfono : +1 850 650 7790

TransStart® FastPfu PCR SuperMix (+dye)

1 ml
5×1 ml
Manual MSDS
CoA
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Product Details

TransStart® FastPfu PCR SuperMix is a ready-to-use mixture of TransStart® FastPfu DNA polymerase, dNTPs, and optimized buffer, featuring high amplification efficiency, fast amplification speed, high fidelity and high specificity. The SuperMix is provided at 2× concentration and can be used at 1× concentration by adding template, primers and H2O for amplification.The amplification products are blunt-ended. The amplification products of 2× TransStart® FastPfu PCR SuperMix (-dye) can be directly cloned into pEASY®-Blunt series vectors. The amplified product of 2×TransStart® FastPfu PCR SuperMix (+dye) can be analyzed by electrophoresis directly, and need to be purified to remove dye when applied in cloning.

Applications

• High fidelity PCR

• Site-directed mutagenesis 

• Blunt end cloning   

• Complex templates    

• GC/AT-rich templates

• Long fragment amplification


Storage

at --18℃ or below for two years

Shipping

Dry ice (-70 ℃)

Product Composition


ComponentAS221-01/11AS221-02/12
TransStart® FastPfu PCR SuperMix (-dye)/ (+dye)        1 ml    5×1 ml
Nuclease-free Water        1 ml        5 ml


References

1 Song R, Guo P, Ren X, et al. A novel polypeptide CAPG-171aa encoded by circCAPG plays a critical role in triple-negative breast cancer[J]. Molecular Cancer, 2023.(IF 37.30)

2 Jin S, Lin Q, Gao Q, et al. Optimized prime editing in monocot plants using PlantPegDesigner and engineered plant prime editors (ePPEs)[J]. Nature Protocols, 2022.(IF 17.02)

3 Chen K, Hu Z, Song W, et al. Diversity of O-glycosyltransferases contributes to the biosynthesis of flavonoid and triterpenoid glycosides in Glycyrrhiza uralensis[J]. ACS Synthetic Biology, 2019.(IF 5.57)

4 Wang Y, Wang Z, Chen Y, et al. A highly efficient CRISPR-Cas9-based genome engineering platform in Acinetobacter baumannii to understand the H2O2-sensing mechanism of OxyR[J]. Cell Chemical Biology, 2019.(IF 6.76)


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