Ubiquitin ligases: structure, function, and regulation N Zheng, N Shabek Annual review of biochemistry 86 (1), 129-157, 2017 | 1388 | 2017 |
D14–SCFD3-dependent degradation of D53 regulates strigolactone signalling F Zhou, Q Lin, L Zhu, Y Ren, K Zhou, N Shabek, F Wu, H Mao, W Dong, ... Nature 504 (7480), 406-410, 2013 | 882 | 2013 |
The predator becomes the prey: regulating the ubiquitin system by ubiquitylation and degradation AM Weissman, N Shabek, A Ciechanover Nature reviews Molecular cell biology 12 (9), 605-620, 2011 | 362 | 2011 |
The size of the proteasomal substrate determines whether its degradation will be mediated by mono-or polyubiquitylation N Shabek, Y Herman-Bachinsky, S Buchsbaum, O Lewinson, ... Molecular cell 48 (1), 87-97, 2012 | 201 | 2012 |
Structural plasticity of D3–D14 ubiquitin ligase in strigolactone signalling N Shabek, F Ticchiarelli, H Mao, TR Hinds, O Leyser, N Zheng Nature 563 (7733), 652-656, 2018 | 163 | 2018 |
The DNA damage-inducible UbL-UbA protein Ddi1 participates in Mec1-mediated degradation of Ho endonuclease L Kaplun, R Tzirkin, A Bakhrat, N Shabek, Y Ivantsiv, D Raveh Molecular and cellular biology 25 (13), 5355-5362, 2005 | 132 | 2005 |
Degradation of ubiquitin: the fate of the cellular reaper N Shabek, A Ciechanover Cell cycle 9 (3), 523-530, 2010 | 108 | 2010 |
Ubiquitin degradation with its substrate, or as a monomer in a ubiquitination-independent mode, provides clues to proteasome regulation N Shabek, Y Herman-Bachinsky, A Ciechanover Proceedings of the National Academy of Sciences 106 (29), 11907-11912, 2009 | 96 | 2009 |
A variety of changes, including CRISPR/Cas9‐mediated deletions, in CENH3 lead to haploid induction on outcrossing S Kuppu, M Ron, MPA Marimuthu, G Li, A Huddleson, MH Siddeek, ... Plant biotechnology journal 18 (10), 2068-2080, 2020 | 88 | 2020 |
Plant ubiquitin ligases as signaling hubs N Shabek, N Zheng Nature structural & molecular biology 21 (4), 293-296, 2014 | 74 | 2014 |
Plant mineral transport systems and the potential for crop improvement B Yadav, A Jogawat, SK Lal, N Lakra, S Mehta, N Shabek, OP Narayan Planta, 2021 | 73 | 2021 |
Unique Role for the UbL-UbA Protein Ddi1 in Turnover of SCFUfo1 Complexes Y Ivantsiv, L Kaplun, R Tzirkin-Goldin, N Shabek, D Raveh Molecular and cellular biology 26 (5), 1579-1588, 2006 | 64 | 2006 |
Maize transcription factor ZmBES1/BZR1-5 positively regulates kernel size F Sun, L Ding, W Feng, Y Cao, F Lu, Q Yang, W Li, Y Lu, N Shabek, F Fu, ... Journal of experimental botany 72 (5), 1714-1726, 2021 | 63 | 2021 |
Structural insights into photoactivation of plant Cryptochrome-2 M Palayam, J Ganapathy, AM Guercio, L Tal, SL Deck, N Shabek Communications Biology 4 (1), 28, 2021 | 57 | 2021 |
Evolution and functions of plant U-box proteins: from protein quality control to signaling J Trenner, J Monaghan, B Saeed, M Quint, N Shabek, M Trujillo Annual Review of Plant Biology 73 (1), 93-121, 2022 | 46 | 2022 |
A conformational switch in the SCF-D3/MAX2 ubiquitin ligase facilitates strigolactone signalling L Tal, M Palayam, M Ron, A Young, A Britt, N Shabek Nature Plants 8 (5), 561-573, 2022 | 44 | 2022 |
Structural aspects of plant hormone signal perception and regulation by ubiquitin ligases L Tal, MXA Gil, AM Guercio, N Shabek Plant Physiology 182 (4), 1537-1544, 2020 | 44 | 2020 |
Structural insights into DDA1 function as a core component of the CRL4-DDB1 ubiquitin ligase N Shabek, J Ruble, CJ Waston, KC Garbutt, TR Hinds, T Li, N Zheng Cell discovery 4 (1), 67, 2018 | 33 | 2018 |
Generation of free ubiquitin chains is up-regulated in stress and facilitated by the HECT domain ubiquitin ligases UFD4 and HUL5 O Braten, N Shabek, Y Kravtsova-Ivantsiv, A Ciechanover Biochemical Journal 444 (3), 611-617, 2012 | 31 | 2012 |
Strigolactones: diversity, perception, and hydrolysis AM Guercio, M Palayam, N Shabek Phytochemistry Reviews 22 (2), 339-359, 2023 | 29 | 2023 |