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Molecular & Cellular Proteomics : MCP|April 4, 2014
Quantitative chemical proteomics identifies novel targets of the anti-cancer multi-kinase inhibitor E-3810Mara Colzani, Roberta Noberini, Mauro Romanenghi, et al.
Epigenetics & Chromatin|July 15, 2025
H2A.X N-terminal acetylation is a newly identified NAA40-mediated modification that is responsive to UV irradiationAriel Klavaris, Costas Koufaris, Roberta Noberini, et al.
Journal of Proteome Research|August 21, 2019
hSWATH: Unlocking SWATH's Full Potential for an Untargeted Histone PerspectiveLaura De Clerck, Sander Willems, Roberta Noberini, et al.
Clinical Epigenetics|July 28, 2021
Spatial epi-proteomics enabled by histone post-translational modification analysis from low-abundance clinical samplesRoberta Noberini, Evelyn Oliva Savoia, Stefania Brandini, et al.
Molecular & Cellular Proteomics : MCP|June 12, 2024
Improved Mass Spectrometry-Based Methods Reveal Abundant Propionylation and Tissue-Specific Histone Propionylation ProfilesAlessandro Vai, Roberta Noberini, Chiara Ghirardi, et al.
Nucleic Acids Research|April 16, 2025
Systematic genetic perturbation reveals principles underpinning robustness of the epigenetic regulatory networkThomas Stuart Wilson, Roberta Noberini, Eirini Moysidou, et al.
The EMBO Journal|February 22, 2024
Hyperacetylated histone H4 is a source of carbon contributing to lipid synthesisEvelina Charidemou, Roberta Noberini, Chiara Ghirardi, et al.
Nucleic Acids Research|September 23, 2025
Mammalian H4K16ac regulates the spatiotemporal order of genome replication rather than gene expressionMarta Milan, Valeria Runfola, Manthan Patel, et al.
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