High-resolution microtubule structures reveal the structural transitions in αβ-tubulin upon GTP hydrolysis GM Alushin, GC Lander, EH Kellogg, R Zhang, D Baker, E Nogales Cell 157 (5), 1117-1129, 2014 | 743 | 2014 |
Mechanistic origin of microtubule dynamic instability and its modulation by EB proteins R Zhang, GM Alushin, A Brown, E Nogales Cell 162 (4), 849-859, 2015 | 460 | 2015 |
Effects of α-tubulin acetylation on microtubule structure and stability L Eshun-Wilson, R Zhang, D Portran, MV Nachury, DB Toso, T Löhr, ... Proceedings of the National Academy of Sciences 116 (21), 10366-10371, 2019 | 298 | 2019 |
Mutations in TUBB8 and human oocyte meiotic arrest R Feng, Q Sang, Y Kuang, X Sun, Z Yan, S Zhang, J Shi, G Tian, ... New England Journal of Medicine 374 (3), 223-232, 2016 | 276 | 2016 |
4.4 Å cryo‐EM structure of an enveloped alphavirus Venezuelan equine encephalitis virus R Zhang, CF Hryc, Y Cong, X Liu, J Jakana, R Gorchakov, ML Baker, ... The EMBO journal 30 (18), 3854-3863, 2011 | 238 | 2011 |
Structure of the decorated ciliary doublet microtubule M Ma, M Stoyanova, G Rademacher, SK Dutcher, A Brown, R Zhang Cell 179 (4), 909-922. e12, 2019 | 203 | 2019 |
Interprotofilament interactions between Alzheimer's Aβ1–42 peptides in amyloid fibrils revealed by cryoEM R Zhang, X Hu, H Khant, SJ Ludtke, W Chiu, MF Schmid, C Frieden, ... Proceedings of the National Academy of Sciences 106 (12), 4653-4658, 2009 | 200 | 2009 |
Separating the effects of nucleotide and EB binding on microtubule structure R Zhang, B LaFrance, E Nogales Proceedings of the National Academy of Sciences 115 (27), E6191-E6200, 2018 | 143 | 2018 |
Structural insight into TPX2-stimulated microtubule assembly R Zhang, J Roostalu, T Surrey, E Nogales Elife 6, e30959, 2017 | 98 | 2017 |
Structures of radial spokes and associated complexes important for ciliary motility M Gui, M Ma, E Sze-Tu, X Wang, F Koh, ED Zhong, B Berger, JH Davis, ... Nature structural & molecular biology 28 (1), 29-37, 2021 | 90 | 2021 |
Structural differences between yeast and mammalian microtubules revealed by cryo-EM SC Howes, EA Geyer, B LaFrance, R Zhang, EH Kellogg, S Westermann, ... Journal of Cell Biology 216 (9), 2669-2677, 2017 | 81 | 2017 |
Automated model building and protein identification in cryo-EM maps K Jamali, L Käll, R Zhang, A Brown, D Kimanius, SHW Scheres Nature 628 (8007), 450-457, 2024 | 75 | 2024 |
Visualizing microtubule structural transitions and interactions with associated proteins E Nogales, R Zhang Current opinion in structural biology 37, 90-96, 2016 | 73 | 2016 |
A new protocol to accurately determine microtubule lattice seam location R Zhang, E Nogales Journal of structural biology 192 (2), 245-254, 2015 | 71 | 2015 |
Mechanism of how augmin directly targets the γ-tubulin ring complex to microtubules JG Song, MR King, R Zhang, RS Kadzik, A Thawani, S Petry Journal of Cell Biology 217 (7), 2417-2428, 2018 | 62 | 2018 |
HIV-1 Nef hijacks clathrin coats by stabilizing AP-1: Arf1 polygons QT Shen, X Ren, R Zhang, IH Lee, JH Hurley Science 350 (6259), aac5137, 2015 | 51 | 2015 |
Cryo-EM structure of cortical microtubules from human parasite Toxoplasma gondii identifies their microtubule inner proteins X Wang, Y Fu, WL Beatty, M Ma, A Brown, LD Sibley, R Zhang Nature communications 12 (1), 3065, 2021 | 49 | 2021 |
Ciliary central apparatus structure reveals mechanisms of microtubule patterning M Gui, X Wang, SK Dutcher, A Brown, R Zhang Nature structural & molecular biology 29 (5), 483-492, 2022 | 43 | 2022 |
Dynamic crotonylation of EB1 by TIP60 ensures accurate spindle positioning in mitosis X Song, F Yang, X Liu, P Xia, W Yin, Z Wang, Y Wang, X Yuan, Z Dou, ... Nature Chemical Biology 17 (12), 1314-1323, 2021 | 40 | 2021 |
Structural transitions in the GTP cap visualized by cryo-electron microscopy of catalytically inactive microtubules BJ LaFrance, J Roostalu, G Henkin, BJ Greber, R Zhang, D Normanno, ... Proceedings of the National Academy of Sciences 119 (2), e2114994119, 2022 | 39 | 2022 |