Eric Verdin
Eric Verdin
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Cited by
Cited by
A SARS-CoV-2 protein interaction map reveals targets for drug repurposing
DE Gordon, GM Jang, M Bouhaddou, J Xu, K Obernier, KM White, ...
Nature 583 (7816), 459-468, 2020
Chronic inflammation in the etiology of disease across the life span
D Furman, J Campisi, E Verdin, P Carrera-Bastos, S Targ, C Franceschi, ...
Nature medicine 25 (12), 1822-1832, 2019
The human Sir2 ortholog, SIRT2, is an NAD+-dependent tubulin deacetylase
BJ North, BL Marshall, MT Borra, JM Denu, E Verdin
Molecular cell 11 (2), 437-444, 2003
SIRT3 regulates mitochondrial fatty-acid oxidation by reversible enzyme deacetylation
MD Hirschey, T Shimazu, E Goetzman, E Jing, B Schwer, DB Lombard, ...
Nature 464 (7285), 121-125, 2010
Suppression of oxidative stress by β-hydroxybutyrate, an endogenous histone deacetylase inhibitor
T Shimazu, MD Hirschey, J Newman, W He, K Shirakawa, N Le Moan, ...
Science 339 (6116), 211-214, 2013
Duration of nuclear NF-κB action regulated by reversible acetylation
L Chen, W Fischle, E Verdin, WC Greene
Science 293 (5535), 1653-1657, 2001
Calorie restriction reduces oxidative stress by SIRT3-mediated SOD2 activation
X Qiu, K Brown, MD Hirschey, E Verdin, D Chen
Cell metabolism 12 (6), 662-667, 2010
Mammalian Sir2 homolog SIRT3 regulates global mitochondrial lysine acetylation
DB Lombard, FW Alt, HL Cheng, J Bunkenborg, RS Streeper, ...
Molecular and cellular biology 27 (24), 8807-8814, 2007
The growing landscape of lysine acetylation links metabolism and cell signalling
C Choudhary, BT Weinert, Y Nishida, E Verdin, M Mann
Nature reviews Molecular cell biology 15 (8), 536-550, 2014
A class of hybrid polar inducers of transformed cell differentiation inhibits histone deacetylases
VM Richon, S Emiliani, E Verdin, Y Webb, R Breslow, RA Rifkind, ...
Proceedings of the National Academy of Sciences 95 (6), 3003-3007, 1998
NAD+ in aging, metabolism, and neurodegeneration
E Verdin
Science 350 (6265), 1208-1213, 2015
HIV reproducibly establishes a latent infection after acute infection of T cells in vitro
A Jordan, D Bisgrove, E Verdin
The EMBO journal, 2003
Mitochondrial dysfunction induces senescence with a distinct secretory phenotype
CD Wiley, MC Velarde, P Lecot, SU Liu, EA Sarnoski, A Freund, ...
Cell metabolism 23 (2), 303-314, 2016
From discoveries in ageing research to therapeutics for healthy ageing
J Campisi, P Kapahi, GJ Lithgow, S Melov, JC Newman, E Verdin
Nature 571 (7764), 183-192, 2019
The expression of a small fraction of cellular genes is changed in response to histone hyperacetylation
C Van Lint, S Emiliani, E Verdin
Gene expression 5 (4-5), 245, 1996
Ketone bodies as signaling metabolites
JC Newman, E Verdin
Trends in Endocrinology & Metabolism 25 (1), 42-52, 2014
Enzymatic activity associated with class II HDACs is dependent on a multiprotein complex containing HDAC3 and SMRT/N-CoR
W Fischle, F Dequiedt, MJ Hendzel, MG Guenther, MA Lazar, W Voelter, ...
Molecular cell 9 (1), 45-57, 2002
Class II histone deacetylases: versatile regulators
E Verdin, F Dequiedt, HG Kasler
TRENDS in Genetics 19 (5), 286-293, 2003
SIRT3 deficiency and mitochondrial protein hyperacetylation accelerate the development of the metabolic syndrome
MD Hirschey, T Shimazu, E Jing, CA Grueter, AM Collins, B Aouizerat, ...
Molecular cell 44 (2), 177-190, 2011
NAD+ metabolism and its roles in cellular processes during ageing
AJ Covarrubias, R Perrone, A Grozio, E Verdin
Nature reviews Molecular cell biology 22 (2), 119-141, 2021
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