1 |
CT5, a subtle in vitro DNA assembling method based on the combination of FnCas12a and T5 exonuclease Dong MJ, Wang F, Lv B, Mei M, Ma LX, Hu YH, Zhai C Biotechnology Letters, 43(4), 899, 2021 |
2 |
Coexistence of endonuclease and exonuclease activities in a novel RecJ from Bacillus cereus Ma LY, Wang W, Hao CZ, Zheng L, Wang L, Zheng MG Biotechnology Letters, 43(7), 1349, 2021 |
3 |
A single digestion, single-stranded oligonucleotide mediated PCR-independent site-directed mutagenesis method Dong MJ, Wang F, Li QQ, Han R, Li AT, Zhai C, Ma LX Applied Microbiology and Biotechnology, 104(9), 3993, 2020 |
4 |
Functional evaluation of the C-terminal region of bacteriophage T4 Rad50 Streff HE, Gao Y, Nelson SW Biochemical and Biophysical Research Communications, 526(2), 485, 2020 |
5 |
The human Exonuclease-1 interactome and phosphorylation sites Eid W, Hess D, Konig C, Gentili C, Ferrari S Biochemical and Biophysical Research Communications, 514(3), 567, 2019 |
6 |
Cytoplasmic p53 contributes to the removal of uracils misincorporated by HIV-1 reverse transcriptase Saragani Y, Hizi A, Rahav G, Zaouch S, Bakhanashvili M Biochemical and Biophysical Research Communications, 497(2), 804, 2018 |
7 |
Electrochemical detection of arsenic contamination based on hybridization chain reaction and RecJ(f) exonuclease-mediated amplification Gu HD, Yang YY, Chen F, Liu TT, Jin J, Pan Y, Miao P Chemical Engineering Journal, 353, 305, 2018 |
8 |
A label-free aptasensor for ultrasensitive Pb2+ detection based on electrochemiluminescence resonance energy transfer between carbon nitride nanofibers and Ru(phen)(3)(2+) Peng YJ, Li Y, Li LL, Zhu JJ Journal of Hazardous Materials, 359, 121, 2018 |
9 |
DNA sequencing with stacked nanopores and exonuclease: A simulation-based analysis Sampath G Electrophoresis, 37(17-18), 2429, 2016 |
10 |
Enhancing the processivity of a family B-type DNA polymerase of Thermococcus onnurineus and application to long PCR Kim YJ, Lee HS, Kwon ST, Lee JH, Kang SG Biotechnology Letters, 36(5), 985, 2014 |