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Bioinformatics (Oxford, England)|March 20, 2018
ADPredict: ADP-ribosylation site prediction based on physicochemical and structural descriptorsMatteo Lo Monte, Candida Manelfi, Marica Gemei, et al.
Biochemical and Biophysical Research Communications|September 20, 2011
Exploring the activation mechanism of TRPM8 channel by targeted MD simulationsAlessandro Pedretti, Alessandra Labozzetta, Matteo Lo Monte, et al.
Cellular and Molecular Life Sciences : CMLS|January 23, 2025
PARP12-mediated ADP-ribosylation contributes to breast cancer cell fate by regulating AKT activation and DNA-damage responseAnupama Pavithran, Maria Matarese, Barbara Morone, et al.
Scientific Reports|October 27, 2017
PARP1-produced poly-ADP-ribose causes the PARP12 translocation to stress granules and impairment of Golgi complex functionsGiuliana Catara, Giovanna Grimaldi, Laura Schembri, et al.
Molecular Pharmaceutics|January 23, 2014
An insight into the skin penetration enhancement mechanism of N-methylpyrrolidoneFrancesco Cilurzo, Giulio Vistoli, Francesca Selmin, et al.
European Journal of Medicinal Chemistry|October 8, 2013
Isoxazole derivatives as potent transient receptor potential melastatin type 8 (TRPM8) agonistsCarmine Ostacolo, Paolo Ambrosino, Roberto Russo, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 1, 2026
Mining cancer genomes for copy number alterations identifies glycosylation enzymes as oncogenic driversPranoy Sahu, Francesco Russo, Domenico Russo, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 31, 2021
PKD-dependent PARP12-catalyzed mono-ADP-ribosylation of Golgin-97 is required for E-cadherin transport from Golgi to plasma membraneGiovanna Grimaldi, Angela Filograna, Laura Schembri, et al.
Scientific Reports|September 10, 2017
Novel selective, potent naphthyl TRPM8 antagonists identified through a combined ligand- and structure-based virtual screening approachAndrea R Beccari, Marica Gemei, Matteo Lo Monte, et al.
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