Dual sgRNA-directed gene knockout using CRISPR/Cas9 technology in Caenorhabditis elegans X Chen, F Xu, C Zhu, J Ji, X Zhou, X Feng, S Guang Scientific Reports 4 (1), 7581, 2014 | 156 | 2014 |
RdRP-synthesized antisense ribosomal siRNAs silence pre-rRNA via the nuclear RNAi pathway X Zhou, X Feng, H Mao, M Li, F Xu, K Hu, S Guang Nature Structural & Molecular Biology 24 (3), 258-269, 2017 | 63 | 2017 |
Cas11 enables genome engineering in human cells with compact CRISPR-Cas3 systems R Tan, RK Krueger, MJ Gramelspacher, X Zhou, Y Xiao, A Ke, Z Hou, ... Molecular Cell 82 (4), 852-867. e5, 2022 | 55 | 2022 |
Nuclear RNAi Contributes to the Silencing of Off-Target Genes and Repetitive Sequences in Caenorhabditis elegans X Zhou, F Xu, H Mao, J Ji, M Yin, X Feng, S Guang Genetics 197 (1), 121-132, 2014 | 32 | 2014 |
Antisense ribosomal siRNAs inhibit RNA polymerase I-directed transcription in C. elegans S Liao, X Chen, T Xu, Q Jin, Z Xu, D Xu, X Zhou, C Zhu, S Guang, X Feng Nucleic Acids Research 49 (16), 9194-9210, 2021 | 21 | 2021 |
A new layer of rRNA regulation by small interference RNAs and the nuclear RNAi pathway X Zhou, X Chen, Y Wang, X Feng, S Guang RNA Biology 14 (11), 1492-1498, 2017 | 20 | 2017 |
CDE-1 suppresses the production of risiRNA by coupling polyuridylation and degradation of rRNA Y Wang, C Weng, X Chen, X Zhou, X Huang, Y Yan, C Zhu BMC biology 18, 1-13, 2020 | 15 | 2020 |
Exploiting Activation and Inactivation Mechanisms in Type IC CRISPR-Cas3 for Genome Editing Applications C Hu, MT Myers, X Zhou, Z Hou, ML Lozen, Y Zhang, A Ke Molecular Cell, 84, 1–13, 2024 | 9 | 2024 |
Development and implementation of a Type I-C CRISPR-based programmable repression system for Neisseria gonorrhoeae WE Geslewitz, A Cardenas, X Zhou, Y Zhang, AK Criss, HS Seifert MBio 15 (2), e03025-23, 2024 | 2 | 2024 |
Co-surveillance of ribosomal RNA by the exosome complex and nucleolar RNAi in C. elegans S Liao, X Chen, T Xu, Q Jin, Z Xu, D Xu, X Zhou, C Zhu, S Guang, X Feng bioRxiv, 2020.11. 23.395020, 2020 | 2 | 2020 |