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Atlanta G. Cook
Atlanta G. Cook
Verified email at ed.ac.uk
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Cited by
Year
Structural biology of nucleocytoplasmic transport
A Cook, F Bono, M Jinek, E Conti
Annu. Rev. Biochem. 76, 647-671, 2007
6282007
The structure of cyclin E1/CDK2: implications for CDK2 activation and CDK2‐independent roles
R Honda, ED Lowe, E Dubinina, V Skamnaki, A Cook, NR Brown, ...
The EMBO journal 24 (3), 452-463, 2005
1642005
Structures of the tRNA export factor in the nuclear and cytosolic states
AG Cook, N Fukuhara, M Jinek, E Conti
Nature 461 (7260), 60-65, 2009
1402009
The CCP4 suite: integrative software for macromolecular crystallography
J Agirre, M Atanasova, H Bagdonas, CB Ballard, A Baslé, ...
Acta Crystallographica Section D: Structural Biology 79 (6), 449-461, 2023
1152023
SPOCD1 is an essential executor of piRNA-directed de novo DNA methylation
A Zoch, T Auchynnikava, RV Berrens, Y Kabayama, T Schöpp, M Heep, ...
Nature 584 (7822), 635-639, 2020
1092020
Structure of human transthyretin complexed with bromophenols: a new mode of binding
M Ghosh, IATM Meerts, A Cook, A Bergman, A Brouwer, LN Johnson
Acta Crystallographica Section D: Biological Crystallography 56 (9), 1085-1095, 2000
1062000
Snapshots of pre-rRNA structural flexibility reveal eukaryotic 40S assembly dynamics at nucleotide resolution
RD Hector, E Burlacu, S Aitken, TL Bihan, M Tuijtel, A Zaplatina, AG Cook, ...
Nucleic acids research 42 (19), 12138-12154, 2014
1032014
The structure of the nuclear export receptor Cse1 in its cytosolic state reveals a closed conformation incompatible with cargo binding
A Cook, E Fernandez, D Lindner, J Ebert, G Schlenstedt, E Conti
Molecular cell 18 (3), 355-367, 2005
982005
Nuclear export complexes in the frame
AG Cook, E Conti
Current opinion in structural biology 20 (2), 247-252, 2010
892010
Nuclear import mechanism of the EJC component Mago-Y14 revealed by structural studies of importin 13
F Bono, AG Cook, M Grünwald, J Ebert, E Conti
Molecular cell 37 (2), 211-222, 2010
752010
NF45 dimerizes with NF90, Zfr and SPNR via a conserved domain that has a nucleotidyltransferase fold
UM Wolkowicz, AG Cook
Nucleic acids research 40 (18), 9356-9368, 2012
722012
Structure of the MeCP2–TBLR1 complex reveals a molecular basis for Rett syndrome and related disorders
V Kruusvee, MJ Lyst, C Taylor, Ž Tarnauskaitė, AP Bird, AG Cook
Proceedings of the National Academy of Sciences 114 (16), E3243-E3250, 2017
702017
Structural Studies on Phospho-CDK2/Cyclin A Bound to Nitrate, a Transition State Analogue:  Implications for the Protein Kinase Mechanism,
A Cook, ED Lowe, ED Chrysina, VT Skamnaki, NG Oikonomakos, ...
Biochemistry 41 (23), 7301-7311, 2002
652002
Kinase activity of fission yeast Mph1 is required for Mad2 and Mad3 to stably bind the anaphase promoting complex
J Zich, AM Sochaj, HM Syred, L Milne, AG Cook, H Ohkura, J Rappsilber, ...
Current Biology 22 (4), 296-301, 2012
502012
Pre-40S ribosome biogenesis factor Tsr1 is an inactive structural mimic of translational GTPases
UM McCaughan, U Jayachandran, V Shchepachev, ZA Chen, ...
Nature communications 7 (1), 11789, 2016
492016
The NF45/NF90 heterodimer contributes to the biogenesis of 60S ribosomal subunits and influences nucleolar morphology
F Wandrey, C Montellese, K Koos, L Badertscher, L Bammert, AG Cook, ...
Molecular and cellular biology 35 (20), 3491-3503, 2015
392015
Nuclear factor 90 uses an ADAR2-like binding mode to recognize specific bases in dsRNA
U Jayachandran, H Grey, AG Cook
Nucleic acids research 44 (4), 1924-1936, 2016
382016
SALL4 controls cell fate in response to DNA base composition
R Pantier, K Chhatbar, T Quante, K Skourti-Stathaki, J Cholewa-Waclaw, ...
Molecular cell 81 (4), 845-858. e8, 2021
322021
Yeast Ssd1 is a non-enzymatic member of the RNase II family with an alternative RNA recognition site
RA Bayne, U Jayachandran, A Kasprowicz, S Bresson, D Tollervey, ...
Nucleic Acids Research 50 (5), 2923-2937, 2022
152022
Repeated evolution of inactive pseudonucleases in a fungal branch of the Dis3/RNase II family of nucleases
ER Ballou, AG Cook, EWJ Wallace
Molecular Biology and Evolution 38 (5), 1837-1846, 2021
142021
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