BUB1 mediation of caspase-independent mitotic death determines cell fate Y Niikura, A Dixit, R Scott, G Perkins, K Kitagawa The Journal of cell biology 178 (2), 283-296, 2007 | 139 | 2007 |
Aurora-B mediated ATM serine 1403 phosphorylation is required for mitotic ATM activation and the spindle checkpoint C Yang, X Tang, X Guo, Y Niikura, K Kitagawa, K Cui, STC Wong, L Fu, ... Molecular cell 44 (4), 597-608, 2011 | 122 | 2011 |
CENP-A K124 ubiquitylation is required for CENP-A deposition at the centromere Y Niikura, R Kitagawa, H Ogi, R Abdulle, V Pagala, K Kitagawa Developmental cell 32 (5), 589-603, 2015 | 112 | 2015 |
Dishevelled, a Wnt signalling component, is involved in mitotic progression in cooperation with Plk1 K Kikuchi, Y Niikura, K Kitagawa, A Kikuchi The EMBO journal 29 (20), 3470-3483, 2010 | 106 | 2010 |
17-AAG, an Hsp90 inhibitor, causes kinetochore defects: a novel mechanism by which 17-AAG inhibits cell proliferation Y Niikura, S Ohta, KJ Vandenbeldt, R Abdulle, BF McEwen, K Kitagawa Oncogene 25 (30), 4133-4146, 2006 | 86 | 2006 |
Caspase-independent mitotic death (CIMD) K Kitagawa, Y Niikura Cell cycle 7 (8), 1001-1005, 2008 | 55 | 2008 |
Solution Structure of the Oxidized Fe7S8 Ferredoxin from the Thermophilic Bacterium Bacillus schlegelii by 1H NMR Spectroscopy, S Aono, D Bentrop, I Bertini, A Donaire, C Luchinat, Y Niikura, A Rosato Biochemistry 37 (27), 9812-9826, 1998 | 54 | 1998 |
Structural and Dynamical Properties of a Partially Unfolded Fe4S4 Protein: Role of the Cofactor in Protein Folding D Bentrop, I Bertini, R Iacoviello, C Luchinat, Y Niikura, M Piccioli, ... Biochemistry 38 (15), 4669-4680, 1999 | 48 | 1999 |
CENP-A ubiquitylation is inherited through dimerization between cell divisions Y Niikura, R Kitagawa, K Kitagawa Cell reports 15 (1), 61-76, 2016 | 37 | 2016 |
BUB3 that dissociates from BUB1 activates caspase-independent mitotic death (CIMD) Y Niikura, H Ogi, K Kikuchi, K Kitagawa Cell Death & Differentiation 17 (6), 1011-1024, 2010 | 31 | 2010 |
Identification of a Novel Splice Variant: Human SGT1B (SUGT1B)* Y Niikura, K Kitagawa DNA sequence 14 (6), 436-441, 2003 | 27 | 2003 |
A refined model for [Fe3S4] 0 clusters in proteins D Bentrop, I Bertini, M Borsari, G Cosenza, C Luchinat, Y Niikura Angewandte Chemie International Edition 39 (20), 3620-3622, 2000 | 23 | 2000 |
CENP-A ubiquitylation is required for CENP-A deposition at the centromere Y Niikura, R Kitagawa, K Kitagawa Developmental cell 40 (1), 7-8, 2017 | 22 | 2017 |
CENP-A ubiquitylation is indispensable to cell viability Y Niikura, R Kitagawa, L Fang, K Kitagawa Developmental cell 50 (6), 683-689. e6, 2019 | 19 | 2019 |
SGT1-HSP90 complex is required for CENP-A deposition at centromeres Y Niikura, R Kitagawa, H Ogi, K Kitagawa Cell Cycle 16 (18), 1683-1694, 2017 | 15 | 2017 |
Model‐free analysis of a thermophilic Fe7S8 protein compared with a mesophilic Fe4S4 protein I Bertini, C Luchinat, Y Niikura, C Presenti Proteins: Structure, Function, and Bioinformatics 41 (1), 75-85, 2000 | 12 | 2000 |
CENP-A ubiquitylation contributes to maintaining the chromosomal location of the centromere Y Niikura, R Kitagawa, K Kitagawa Molecules 24 (3), 402, 2019 | 11 | 2019 |
EWSR1 maintains centromere identity R Kitagawa, Y Niikura, PJ Houghton, K Kitagawa Cell reports 42 (6), 2023 | 10 | 2023 |
The inheritance of centromere identity Y Niikura, R Kitagawa, K Kitagawa Molecular & cellular oncology 3 (4), e1188226, 2016 | 6 | 2016 |
Functions of SGT1, a Co-chaperone Y Niikura, K Kitagawa Heat Shock Protein 90 in Human Diseases and Disorders, 317-370, 2019 | 4 | 2019 |