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Si-Cheng Liu

Showing results (21-30 of 25) with videos related to

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Nucleic Acids Research|October 5, 2017
H2AX facilitates classical non-homologous end joining at the expense of limited nucleotide loss at repair junctionsYi-Li Feng, Ji-Feng Xiang, Si-Cheng Liu, et al.
Scientific Reports|October 1, 2016
Gamma-H2AX upregulation caused by Wip1 deficiency increases depression-related cellular senescence in hippocampusZhi-Yong He, Wen-Yue Wang, Wei-Yan Hu, et al.
Genome Biology|October 21, 2018
Harnessing accurate non-homologous end joining for efficient precise deletion in CRISPR/Cas9-mediated genome editingTao Guo, Yi-Li Feng, Jing-Jing Xiao, et al.
Genome Biology|April 14, 2025
Post-cleavage target residence determines asymmetry in non-homologous end joining of Cas12a-induced DNA double strand breaksRuo-Dan Chen, Yi Yang, Kun-Ming Liu, et al.
Genome Biology|August 1, 2022
Target residence of Cas9-sgRNA influences DNA double-strand break repair pathway choices in CRISPR/Cas9 genome editingSi-Cheng Liu, Yi-Li Feng, Xiu-Na Sun, et al.
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Showing results (21-30 of 25) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 25 results.
Nucleic Acids Research|October 5, 2017
H2AX facilitates classical non-homologous end joining at the expense of limited nucleotide loss at repair junctionsYi-Li Feng, Ji-Feng Xiang, Si-Cheng Liu, et al.
Scientific Reports|October 1, 2016
Gamma-H2AX upregulation caused by Wip1 deficiency increases depression-related cellular senescence in hippocampusZhi-Yong He, Wen-Yue Wang, Wei-Yan Hu, et al.
Genome Biology|October 21, 2018
Harnessing accurate non-homologous end joining for efficient precise deletion in CRISPR/Cas9-mediated genome editingTao Guo, Yi-Li Feng, Jing-Jing Xiao, et al.
Genome Biology|April 14, 2025
Post-cleavage target residence determines asymmetry in non-homologous end joining of Cas12a-induced DNA double strand breaksRuo-Dan Chen, Yi Yang, Kun-Ming Liu, et al.
Genome Biology|August 1, 2022
Target residence of Cas9-sgRNA influences DNA double-strand break repair pathway choices in CRISPR/Cas9 genome editingSi-Cheng Liu, Yi-Li Feng, Xiu-Na Sun, et al.
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