Structural basis of RNA polymerase II backtracking, arrest and reactivation ACM Cheung, P Cramer Nature 471 (7337), 249-253, 2011 | 421 | 2011 |
Architecture of the RNA polymerase–Spt4/5 complex and basis of universal transcription processivity FW Martinez‐Rucobo, S Sainsbury, ACM Cheung, P Cramer The EMBO journal 30 (7), 1302-1310, 2011 | 278 | 2011 |
RNA polymerase I structure and transcription regulation C Engel, S Sainsbury, AC Cheung, D Kostrewa, P Cramer Nature 502 (7473), 650-655, 2013 | 257 | 2013 |
Structural basis of transcription: mismatch-specific fidelity mechanisms and paused RNA polymerase II with frayed RNA JF Sydow, F Brueckner, ACM Cheung, GE Damsma, S Dengl, E Lehmann, ... Molecular cell 34 (6), 710-721, 2009 | 208 | 2009 |
Spt4/5 stimulates transcription elongation through the RNA polymerase clamp coiled-coil motif A Hirtreiter, GE Damsma, ACM Cheung, D Klose, D Grohmann, E Vojnic, ... Nucleic acids research 38 (12), 4040-4051, 2010 | 195 | 2010 |
A movie of RNA polymerase II transcription ACM Cheung, P Cramer Cell 149 (7), 1431-1437, 2012 | 144 | 2012 |
Mechanism of translesion transcription by RNA polymerase II and its role in cellular resistance to DNA damage C Walmacq, ACM Cheung, ML Kireeva, L Lubkowska, C Ye, D Gotte, ... Molecular cell 46 (1), 18-29, 2012 | 133 | 2012 |
Structure of the transcription coactivator SAGA H Wang, C Dienemann, A Stützer, H Urlaub, ACM Cheung, P Cramer Nature 577 (7792), 717-720, 2020 | 128 | 2020 |
Structural basis of initial RNA polymerase II transcription ACM Cheung, S Sainsbury, P Cramer The EMBO journal 30 (23), 4755-4763, 2011 | 117 | 2011 |
Molecular basis of Rrn3-regulated RNA polymerase I initiation and cell growth C Blattner, S Jennebach, F Herzog, A Mayer, ACM Cheung, G Witte, ... Genes & development 25 (19), 2093-2105, 2011 | 116 | 2011 |
Structure of DNA-CMG-Pol epsilon elucidates the roles of the non-catalytic polymerase modules in the eukaryotic replisome P Goswami, F Abid Ali, ME Douglas, J Locke, A Purkiss, A Janska, ... Nature communications 9 (1), 5061, 2018 | 105 | 2018 |
Structure of human mitochondrial RNA polymerase elongation complex K Schwinghammer, ACM Cheung, YI Morozov, K Agaronyan, D Temiakov, ... Nature structural & molecular biology 20 (11), 1298-1303, 2013 | 97 | 2013 |
Nano positioning system reveals the course of upstream and nontemplate DNA within the RNA polymerase II elongation complex J Andrecka, B Treutlein, MAI Arcusa, A Muschielok, R Lewis, ... Nucleic acids research 37 (17), 5803-5809, 2009 | 97 | 2009 |
A novel intermediate in transcription initiation by human mitochondrial RNA polymerase YI Morozov, K Agaronyan, ACM Cheung, M Anikin, P Cramer, D Temiakov Nucleic acids research 42 (6), 3884-3893, 2014 | 89 | 2014 |
A model for transcription initiation in human mitochondria YI Morozov, AV Parshin, K Agaronyan, ACM Cheung, M Anikin, P Cramer, ... Nucleic acids research 43 (7), 3726-3735, 2015 | 76 | 2015 |
Structure–function studies of the RNA polymerase II elongation complex F Brueckner, KJ Armache, A Cheung, GE Damsma, H Kettenberger, ... Acta Crystallographica Section D: Biological Crystallography 65 (2), 112-120, 2009 | 68 | 2009 |
Complete architecture of the archaeal RNA polymerase open complex from single-molecule FRET and NPS J Nagy, D Grohmann, ACM Cheung, S Schulz, K Smollett, F Werner, ... Nature communications 6 (1), 6161, 2015 | 62 | 2015 |
The RNA polymerase trigger loop functions in all three phases of the transcription cycle T Fouqueau, ME Zeller, AC Cheung, P Cramer, M Thomm Nucleic acids research 41 (14), 7048-7059, 2013 | 49 | 2013 |
Structure of the complete, membrane-assembled COPII coat reveals a complex interaction network J Hutchings, VG Stancheva, NR Brown, ACM Cheung, EA Miller, G Zanetti Nature communications 12 (1), 2034, 2021 | 46 | 2021 |
Cryo-EM structure of the SAGA and NuA4 coactivator subunit Tra1 at 3.7 angstrom resolution LM Diaz-Santin, N Lukoyanova, E Aciyan, ACM Cheung Elife 6, e28384, 2017 | 44 | 2017 |