Frederique Magdinier
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Articles (11)
Chromatin Structure and Dynamics: Focus on Neuronal Differentiation and Pathological Implication
Chromatin structure is an essential regulator of gene expression. Its state of compaction contributes to the regulation of genetic programs, in particular during differentiation. Epigenetic processes, which include post-translational modifications of histones, DNA methylation and implication of non-coding RNA, are powerful regulators of gene expression. Neurogenesis and neuronal differentiation are spatio-temporally regulated events that allow the formation of the central nervous system components. Here, we review the chromatin structure and post-translational histone modifications associated with neuronal differentiation. Studying the impact of histone modifications on neuronal differentiation improves our understanding of the pathophysiological mechanisms of chromatinopathies and opens up new therapeutic avenues. In addition, we will discuss techniques for the analysis of histone modifications on a genome-wide scale and the pathologies associated with the dysregulation of the epigenetic machinery.
Year:
2022
Collaborators (9)
Julien Van-Gils
Aix-Marseille University
Rachele Piras
Istituti Clinici Scientifici Maugeri SpA IRCCS Lumezzane
Patrice Roll
Aix-Marseille University
Shifeng Xue
National University of Singapore (NUS)
M. ESTHER GALLARDO PEREZ
Miguel Servet II Researcher; Head of the Traslational Research with iPS Cells Group
Instituto de Investigación Hospital 12 de Octubre
Jerome Robin
Junior Assistant Professor (CRCN)
INSERM
Carmelo RODOLICO
Associated Professor of Neurology
University of Messina
maurizio d'esposito
Full Professor
Istituto di Genetica e Biofisica Adriano Buzzati Traverso Consiglio Nazionale delle Ricerche
Laurent Tichit
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