Gene Bio Systems
DMT Chemically Competent Cell
DMT Chemically Competent Cell
SKU:CD511-01
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€107,95 EUR
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- DMT Chemical Competent cells have high transformation efficiency: >108 cfu/μg (pUC19 DNA), are resistant to T1 and T5 phage. The cells harbor DMT enzyme (DpnI) to achieve in vivo digestion of methylated DN and are ideal for some site-directed mutagenesis protocols.
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Genotype |
F- φ80 lacZΔM15 Δ(lacZYA-argF)U169 recA1 endA1 hsdR17(rK-, mK+) phoA supE44 thi-1 gyrA96relA1 tonA |
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Features |
• High transformation efficiency: >108 cfu/μg (pUC19 DNA). • Resistance to T1 and T5 phage. • In vivo digestion of methylated DNA, suitable for site-directed mutagenesis. |
|
Storage |
at -70 °C for six months |
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Notes |
Higher efficiency transformation can be achieved by transforming cells immediately following thawing. Avoid repeated thawing. Gentle handling is required for the entire procedure. |
References:
| Literature | Journal | IF | Author | Date | Link |
|---|---|---|---|---|---|
| Characterization of EndoTT, a novel single-stranded DNA-specific endonuclease from Thermoanaerobacter tengcongensis | nucleic acids research | 9.202 | Zhang S, et al. State Key Laboratory of Microbial | 2010 Jun | The original link |
| Improving the thermostability of a fungal GH11 xylanase via site-directed mutagenesis guided by sequence and structural analysis | Biotechnology for Biofuels | 6.4439 | Nanyu Han,et al. | 2017 May | The original link |
| A Novel Enterovirus 71 (EV71) Virulence Determinant: The 69th Residue of 3C Protease Modulates Pathogenicity | Front Cell Infect Microbiol | 5.2179 | Bingqing Li,et al. | 2017Feb | The original link |
| The N-Terminal GH10 Domain of a Multimodular Protein from Caldicellulosiruptor bescii Is a Versatile Xylanase/??-Glucanase That Can Degrade Crystalline Cellulose | Applied and Environmental Microbiology | 3.668 | Xianli Xue, et al. | 2015 Mar | The original link |
