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Functional insights from the structure of the 30S ribosomal subunit and its interactions with antibiotics AP Carter, WM Clemons, DE Brodersen, RJ Morgan-Warren, BT Wimberly, ... Nature 407 (6802), 340-348, 2000 | 2052 | 2000 |
Recognition of Cognate Transfer RNA by the 30S Ribosomal Subunit JM Ogle, DE Brodersen, WM Clemons Jr, MJ Tarry, AP Carter, ... Science 292 (5518), 897-902, 2001 | 1543 | 2001 |
The structural basis for the action of the antibiotics tetracycline, pactamycin, and hygromycin B on the 30S ribosomal subunit DE Brodersen, WM Clemons, AP Carter, RJ Morgan-Warren, BT Wimberly, ... Cell 103 (7), 1143-1154, 2000 | 1176 | 2000 |
Single-molecule analysis of dynein processivity and stepping behavior SL Reck-Peterson, A Yildiz, AP Carter, A Gennerich, N Zhang, RD Vale Cell 126 (2), 335-348, 2006 | 744 | 2006 |
The cytoplasmic dynein transport machinery and its many cargoes SL Reck-Peterson, WB Redwine, RD Vale, AP Carter Nature reviews Molecular cell biology 19 (6), 382-398, 2018 | 599 | 2018 |
Crystal Structure of an Initiation Factor Bound to the 30S Ribosomal Subunit AP Carter, WM Clemons Jr, DE Brodersen, RJ Morgan-Warren, T Hartsch, ... Science 291 (5503), 498-501, 2001 | 536 | 2001 |
SARS-CoV-2 infects the brain choroid plexus and disrupts the blood-CSF barrier in human brain organoids L Pellegrini, A Albecka, DL Mallery, MJ Kellner, D Paul, AP Carter, ... Cell stem cell 27 (6), 951-961. e5, 2020 | 498 | 2020 |
Insights into the decoding mechanism from recent ribosome structures JM Ogle, AP Carter, V Ramakrishnan Trends in biochemical sciences 28 (5), 259-266, 2003 | 493 | 2003 |
Crystal structure of the 30 S ribosomal subunit from Thermus thermophilus: structure of the proteins and their interactions with 16 S RNA DE Brodersen, WM Clemons Jr, AP Carter, BT Wimberly, V Ramakrishnan Journal of molecular biology 316 (3), 725-768, 2002 | 485 | 2002 |
Force-induced bidirectional stepping of cytoplasmic dynein A Gennerich, AP Carter, SL Reck-Peterson, RD Vale Cell 131 (5), 952-965, 2007 | 460 | 2007 |
The structure of the dynactin complex and its interaction with dynein L Urnavicius, K Zhang, AG Diamant, C Motz, MA Schlager, M Yu, NA Patel, ... Science 347 (6229), 1441-1446, 2015 | 444 | 2015 |
In vitro reconstitution of a highly processive recombinant human dynein complex MA Schlager, HT Hoang, L Urnavicius, SL Bullock, AP Carter The EMBO journal 33 (17), 1855-1868, 2014 | 374 | 2014 |
Furin cleavage of SARS-CoV-2 Spike promotes but is not essential for infection and cell-cell fusion G Papa, DL Mallery, A Albecka, LG Welch, J Cattin-Ortolá, J Luptak, ... PLoS pathogens 17 (1), e1009246, 2021 | 312 | 2021 |
Crystal structure of the dynein motor domain AP Carter, C Cho, L Jin, RD Vale Science 331 (6021), 1159-1165, 2011 | 309 | 2011 |
A thermostable, closed SARS-CoV-2 spike protein trimer X Xiong, K Qu, KA Ciazynska, M Hosmillo, AP Carter, S Ebrahimi, Z Ke, ... Nature structural & molecular biology 27 (10), 934-941, 2020 | 293 | 2020 |
Structure and functional role of dynein's microtubule-binding domain AP Carter, JE Garbarino, EM Wilson-Kubalek, WE Shipley, C Cho, ... Science 322 (5908), 1691-1695, 2008 | 285 | 2008 |
Growth factors can activate ATF2 via a two-step mechanism: phosphorylation of Thr71 through the Ras–MEK–ERK pathway and of Thr69 through RalGDS–Src–p38 DM Ouwens, ND de Ruiter, GCM van der Zon, AP Carter, J Schouten, ... The EMBO journal 21 (14), 3782-3793, 2002 | 285 | 2002 |
Cryo-EM shows how dynactin recruits two dyneins for faster movement L Urnavicius, CK Lau, MM Elshenawy, E Morales-Rios, C Motz, A Yildiz, ... Nature 554 (7691), 202-206, 2018 | 270 | 2018 |
Cryo-EM reveals how human cytoplasmic dynein is auto-inhibited and activated K Zhang, HE Foster, A Rondelet, SE Lacey, N Bahi-Buisson, AW Bird, ... Cell 169 (7), 1303-1314. e18, 2017 | 266 | 2017 |