Trans1-T1 Phage Resistant Chemically Competent Cell
Trans1-T1 克隆感受态细胞
| 目录号 | 规格 | 单价 |
|---|---|---|
| CD501-02 | 10×100 µl | 260 |
| CD501-03 | 20×100 µl | 480 |
产品详情介绍
Trans1-T1 Phage Resistant化学感受态细胞经特殊工艺制作,可用于DNA的化学转化。使用pUC19质粒DNA检测,转化效率高达109 cfu/μg DNA以上。
Lei Z, Meng H, Liu L, et al. Mitochondrial base editor induces substantial nuclear off-target mutations[J]. Nature, 2022. (IF 69.50)
Zhang Q, Zhang X, Zhu Y, et al. Recognition of cyclic dinucleotides and folates by human SLC19A1[J]. Nature, 2022. (IF 69.50)
Shan L, Xu G, Yao R W, et al. Nucleolar URB1 ensures 3′ ETS rRNA removal to prevent exosome surveillance[J]. Nature, 2023. (IF 64.80)
Zhang X X, Zhang X, Ren J W, et al. Precise modelling of mitochondrial diseases using optimized mitoBEs[J]. Nature, 2025. (IF 50.50)
An Bolin, Tang Tzu-Chieh, Zhang Q, et al. Synthetic circuits for cell ratio control Bolin[J]. Nature, 2026.(IF 48.50)
Zhang R W, Zhou H, et al. Amplification editing enables efficient and precise duplication of DNA from short sequence to megabase and chromosomal scale [J]. Cell, 2024. (IF 45.50)
Wang C, Wang J, Lu J, et al. A natural gene drive system confers reproductive isolation in rice[J]. Cell, 2023. (IF 45.50)
Guo W T, Tang H X, Yi Z Y, et al. Long-term reversal of Duchenne muscular dystrophy via circular arRNA-guided exon skipping in monkeys and humans[J]. Cell, 2026. (IF 42.50)
Liu X Q, Li P, Gao B Q, et al. De novo assembly of nuclear stress bodies rearranges and enhances NFIL3 to restrain acute inflammatory responses[J]. Cell, 2025. (IF 42.50)
Yu Y, Li W, Liu Y, et al. A Zea genus-specific micropeptide controls kernel dehydration in maize[J]. Cell, 2025. (IF 42.50)




