Anne-Laurence Boutillier

Affiliations: 
University of Strasbourg, Strasbourg, Grand Est, France 
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"Anne-Laurence Boutillier"
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Publications

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Klein MM, Cholvin T, Cosquer B, et al. (2019) Ventral midline thalamus lesion prevents persistence of new (learning-triggered) hippocampal spines, delayed neocortical spinogenesis, and spatial memory durability. Brain Structure & Function
Boutillier AL, Tzeplaeff L, Dupuis L. (2019) The dark side of HDAC inhibition in ALS. Ebiomedicine
Chatterjee S, Cassel R, Schneider-Anthony A, et al. (2018) Reinstating plasticity and memory in a tauopathy mouse model with an acetyltransferase activator. Embo Molecular Medicine
Le Gras S, Keime C, Anthony A, et al. (2017) Altered enhancer transcription underlies Huntington's disease striatal transcriptional signature. Scientific Reports. 7: 42875
Swaminathan A, Delage H, Chatterjee S, et al. (2016) Transcriptional Coactivator and Chromatin protein, PC4, is involved in Hippocampal Neurogenesis and Spatial Memory Extinction. The Journal of Biological Chemistry
Neidl R, Schneider A, Bousiges O, et al. (2016) Late-Life Environmental Enrichment Induces Acetylation Events and Nuclear Factor κB-Dependent Regulations in the Hippocampus of Aged Rats Showing Improved Plasticity and Learning. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 4351-61
Palamiuc L, Schlagowski A, Ngo ST, et al. (2015) A metabolic switch toward lipid use in glycolytic muscle is an early pathologic event in a mouse model of amyotrophic lateral sclerosis. Embo Molecular Medicine. 7: 526-46
Achour M, Le Gras S, Keime C, et al. (2015) Neuronal identity genes regulated by super-enhancers are preferentially down-regulated in the striatum of Huntington's disease mice. Human Molecular Genetics. 24: 3481-96
Swaminathan A, Kumar M, Halder Sinha S, et al. (2014) Modulation of neurogenesis by targeting epigenetic enzymes using small molecules: an overview. Acs Chemical Neuroscience. 5: 1164-77
Puttagunta R, Tedeschi A, Sória MG, et al. (2014) PCAF-dependent epigenetic changes promote axonal regeneration in the central nervous system. Nature Communications. 5: 3527
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