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Structural basis of transcription activation Y Feng, Y Zhang, RH Ebright Science 352 (6291), 1330-1333, 2016 | 109 | 2016 |
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Structural basis of microRNA processing by Dicer-like 1 X Wei, H Ke, A Wen, B Gao, J Shi, Y Feng Nature Plants 7 (10), 1389-1396, 2021 | 80 | 2021 |
GE23077 binds to the RNA polymerase ‘i’and ‘i+ 1’sites and prevents the binding of initiating nucleotides Y Zhang, D Degen, MX Ho, E Sineva, KY Ebright, YW Ebright, V Mekler, ... Elife 3, e02450, 2014 | 79 | 2014 |
Inhibitor discovery targeting the intermediate structure of β-amyloid peptide on the conformational transition pathway: implications in the aggregation mechanism of β-amyloid … D Liu, Y Xu, Y Feng, H Liu, X Shen, K Chen, J Ma, H Jiang Biochemistry 45 (36), 10963-10972, 2006 | 75 | 2006 |
Design, Synthesis, and Interaction Study of Quinazoline-2(1H)-thione Derivatives as Novel Potential Bcl-xL Inhibitors Y Feng, X Ding, T Chen, L Chen, F Liu, X Jia, X Luo, X Shen, K Chen, ... Journal of medicinal chemistry 53 (9), 3465-3479, 2010 | 67 | 2010 |
Structural basis of Q-dependent transcription antitermination J Shi, X Gao, T Tian, Z Yu, B Gao, A Wen, L You, S Chang, X Zhang, ... Nature communications 10 (1), 2925, 2019 | 48 | 2019 |
CueR activates transcription through a DNA distortion mechanism C Fang, SJ Philips, X Wu, K Chen, J Shi, L Shen, J Xu, Y Feng, ... Nature chemical biology 17 (1), 57-64, 2021 | 47 | 2021 |
A fluorometric assay of SIRT1 deacetylation activity through quantification of nicotinamide adenine dinucleotide Y Feng, J Wu, L Chen, C Luo, X Shen, K Chen, H Jiang, D Liu Analytical biochemistry 395 (2), 205-210, 2009 | 46 | 2009 |
Structural basis of ECF-σ-factor-dependent transcription initiation W Lin, S Mandal, D Degen, MS Cho, Y Feng, K Das, RH Ebright Nature communications 10 (1), 710, 2019 | 42 | 2019 |
Pol IV and RDR2: a two-RNA-polymerase machine that produces double-stranded RNA K Huang, XX Wu, CL Fang, ZG Xu, HW Zhang, J Gao, CM Zhou, LL You, ... Science 374 (6575), 1579-1586, 2021 | 40 | 2021 |
Dual role of Zn2+ in maintaining structural integrity and suppressing deacetylase activity of SIRT1 L Chen, Y Feng, Y Zhou, W Zhu, X Shen, K Chen, H Jiang, D Liu Journal of inorganic biochemistry 104 (2), 180-185, 2010 | 37 | 2010 |
LIN28 coordinately promotes nucleolar/ribosomal functions and represses the 2C-like transcriptional program in pluripotent stem cells Z Sun, H Yu, J Zhao, T Tan, H Pan, Y Zhu, L Chen, C Zhang, L Zhang, ... Protein & Cell 13 (7), 490-512, 2022 | 34 | 2022 |
Structural basis for transcription inhibition by E. coli SspA F Wang, J Shi, D He, B Tong, C Zhang, A Wen, Y Zhang, Y Feng, W Lin Nucleic Acids Research 48 (17), 9931-9942, 2020 | 32 | 2020 |
Structures and mechanism of transcription initiation by bacterial ECF factors C Fang, L Li, L Shen, J Shi, S Wang, Y Feng, Y Zhang Nucleic Acids Research 47 (13), 7094-7104, 2019 | 32 | 2019 |
Structural basis of transcription inhibition by CBR hydroxamidines and CBR pyrazoles Y Feng, D Degen, X Wang, M Gigliotti, S Liu, Y Zhang, D Das, ... Structure 23 (8), 1470-1481, 2015 | 31 | 2015 |
Structural basis for intrinsic transcription termination L You, EO Omollo, C Yu, RA Mooney, J Shi, L Shen, X Wu, A Wen, D He, ... Nature 613 (7945), 783-789, 2023 | 29 | 2023 |
Structural basis for transcription antitermination at bacterial intrinsic terminator L You, J Shi, L Shen, L Li, C Fang, C Yu, W Cheng, Y Feng, Y Zhang Nature communications 10 (1), 3048, 2019 | 28 | 2019 |