Spatial regulation of Cdc55–PP2A by Zds1/Zds2 controls mitotic entry and mitotic exit in budding yeast V Rossio, S Yoshida Journal of Cell Biology 193 (3), 445-454, 2011 | 72 | 2011 |
The RSC chromatin-remodeling complex influences mitotic exit and adaptation to the spindle assembly checkpoint by controlling the Cdc14 phosphatase V Rossio, E Galati, M Ferrari, A Pellicioli, T Sutani, K Shirahige, ... Journal of Cell Biology 191 (5), 981-997, 2010 | 56 | 2010 |
Adapt or die: how eukaryotic cells respond to prolonged activation of the spindle assembly checkpoint V Rossio, E Galati, S Piatti Biochemical Society Transactions 38 (6), 1645-1649, 2010 | 36 | 2010 |
A yeast GSK-3 kinase Mck1 promotes Cdc6 degradation to inhibit DNA re-replication AE Ikui, V Rossio, L Schroeder, S Yoshida PLoS genetics 8 (12), e1003099, 2012 | 33 | 2012 |
The budding yeast Polo-like kinase Cdc5 is released from the nucleus during anaphase for timely mitotic exit VV Botchkarev Jr, V Rossio, S Yoshida Cell Cycle 13 (20), 3260-3270, 2014 | 30 | 2014 |
Nuclear PP2A-Cdc55 prevents APC-Cdc20 activation during the spindle assembly checkpoint V Rossio, T Michimoto, T Sasaki, I Ohbayashi, Y Kikuchi, S Yoshida Journal of cell science 126 (19), 4396-4405, 2013 | 23 | 2013 |
The budding yeast PP2ACdc55 protein phosphatase prevents the onset of anaphase in response to morphogenetic defects E Chiroli, V Rossio, G Lucchini, S Piatti The Journal of cell biology 177 (4), 599-611, 2007 | 22 | 2007 |
Zds1/Zds2–PP2ACdc55 complex specifies signaling output from Rho1 GTPase EM Jonasson, V Rossio, R Hatakeyama, M Abe, Y Ohya, S Yoshida Journal of Cell Biology 212 (1), 51-61, 2016 | 20 | 2016 |
Proteomics of broad deubiquitylase inhibition unmasks redundant enzyme function to reveal substrates and assess enzyme specificity V Rossio, JA Paulo, J Chick, B Brasher, SP Gygi, RW King Cell chemical biology 28 (4), 487-502. e5, 2021 | 18 | 2021 |
Comparative genetic analysis of PP2A-Cdc55 regulators in budding yeast V Rossio, A Kazatskaya, M Hirabayashi, S Yoshida Cell Cycle 13 (13), 2073-2083, 2014 | 15 | 2014 |
Fe3+-NTA magnetic beads as an alternative to spin column-based phosphopeptide enrichment X Liu, V Rossio, SG Thakurta, A Flora, L Foster, RD Bomgarden, SP Gygi, ... Journal of proteomics 260, 104561, 2022 | 13 | 2022 |
Enriching cysteine-containing peptides using a sulfhydryl-reactive alkylating reagent with a phosphonic acid group and immobilized metal affinity chromatography X Liu, V Rossio, SP Gygi, JA Paulo Journal of proteome research 22 (4), 1270-1279, 2023 | 8 | 2023 |
Spin column-based peptide fractionation alternatives for streamlined tandem mass tag (SL-TMT) sample processing X Liu, V Rossio, JA Paulo Journal of proteomics 276, 104839, 2023 | 7 | 2023 |
Enhancing Proteome Coverage by Using Strong Anion-Exchange in Tandem with Basic-pH Reversed-Phase Chromatography for Sample Multiplexing-Based Proteomics T Zhang, X Liu, V Rossio, SL Dawson, SP Gygi, JA Paulo Journal of Proteome Research, 2023 | 6 | 2023 |
Comparison of the Proteomes and Phosphoproteomes of S. cerevisiae Cells Harvested with Different Strategies V Rossio, JA Paulo Proteomes 11 (4), 28, 2023 | 5 | 2023 |
Comparative proteomic analysis of two commonly used laboratory yeast strains: W303 and BY4742 V Rossio, X Liu, JA Paulo Proteomes 11 (4), 30, 2023 | 4 | 2023 |
Specificity profiling of deubiquitylases against endogenously generated ubiquitin-protein conjugates V Rossio, JA Paulo, X Liu, SP Gygi, RW King Cell Chemical Biology, 2024 | 3 | 2024 |
Quantitative proteome and phosphoproteome datasets of DNA replication and mitosis in Saccharomyces cerevisiae V Rossio, JA Paulo Data in Brief 45, 108741, 2022 | 1 | 2022 |
Identification of Deubiquitinase Substrates in Xenopus Egg Extract V Rossio, JA Paulo, RW King Deubiquitinases: Methods and Protocols, 219-236, 2022 | 1 | 2022 |
Comprehensive Analysis of the Proteome of S. cerevisiae Wild-Type and pdr5Δ Cells in Response to Bisphenol A (BPA) Exposure V Rossio, JA Paulo Microorganisms 13 (1), 114, 2025 | | 2025 |