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Jingdong Cheng

Showing results (61-70 of 66) with videos related to

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Nature Chemical Biology|January 14, 2025
Catalytic-independent functions of the Integrator-PP2A complex (INTAC) confer sensitivity to BET inhibitionPengyu Fan, Xue-Ying Shang, Aixia Song, et al.
Cancer Discovery|October 19, 2022
A Dynamic rRNA Ribomethylome Drives Stemness in Acute Myeloid LeukemiaFengbiao Zhou, Nesrine Aroua, Yi Liu, et al.
Nature|January 20, 2025
Author Correction: R-loop-dependent promoter-proximal termination ensures genome stabilityCongling Xu, Chengyu Li, Jiwei Chen, et al.
Cell Research|August 5, 2024
SMYD5 is a ribosomal methyltransferase that catalyzes RPL40 lysine methylation to enhance translation output and promote hepatocellular carcinomaBisi Miao, Ling Ge, Chenxi He, et al.
Nature|August 9, 2023
R-loop-dependent promoter-proximal termination ensures genome stabilityCongling Xu, Chengyu Li, Jiwei Chen, et al.
Nature Chemical Biology|July 1, 2020
Tetracenomycin X inhibits translation by binding within the ribosomal exit tunnelIlya A Osterman, Maximiliane Wieland, Tinashe P Maviza, et al.
Pageof 7

Showing results (61-70 of 66) with videos related to

Sort By:
Pageof 7
You have reached the last page of results.This site can display upto 66 results.
Nature Chemical Biology|January 14, 2025
Catalytic-independent functions of the Integrator-PP2A complex (INTAC) confer sensitivity to BET inhibitionPengyu Fan, Xue-Ying Shang, Aixia Song, et al.
Cancer Discovery|October 19, 2022
A Dynamic rRNA Ribomethylome Drives Stemness in Acute Myeloid LeukemiaFengbiao Zhou, Nesrine Aroua, Yi Liu, et al.
Nature|January 20, 2025
Author Correction: R-loop-dependent promoter-proximal termination ensures genome stabilityCongling Xu, Chengyu Li, Jiwei Chen, et al.
Cell Research|August 5, 2024
SMYD5 is a ribosomal methyltransferase that catalyzes RPL40 lysine methylation to enhance translation output and promote hepatocellular carcinomaBisi Miao, Ling Ge, Chenxi He, et al.
Nature|August 9, 2023
R-loop-dependent promoter-proximal termination ensures genome stabilityCongling Xu, Chengyu Li, Jiwei Chen, et al.
Nature Chemical Biology|July 1, 2020
Tetracenomycin X inhibits translation by binding within the ribosomal exit tunnelIlya A Osterman, Maximiliane Wieland, Tinashe P Maviza, et al.
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