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Lamin A/C sustains PcG protein architecture, maintaining transcriptional repression at target genes

Authors :
Cesarini, E.
Mozzetta, C.
Marullo, F.
Gregoretti, F.
Gargiulo, A.
Columbaro, M.
Cortesi, A.
Antonelli, L.
Di Pelino, S.
Squarzoni, S.
Palacios, Daniela
Zippo, A.
Bodega, B.
Oliva, G.
Lanzuolo, C.
Palacios D. (ORCID:0000-0002-2207-2369)
Cesarini, E.
Mozzetta, C.
Marullo, F.
Gregoretti, F.
Gargiulo, A.
Columbaro, M.
Cortesi, A.
Antonelli, L.
Di Pelino, S.
Squarzoni, S.
Palacios, Daniela
Zippo, A.
Bodega, B.
Oliva, G.
Lanzuolo, C.
Palacios D. (ORCID:0000-0002-2207-2369)
Publication Year :
2015

Abstract

Beyond its role in providing structure to the nuclear envelope, lamin A/C is involved in transcriptional regulation. However, its cross talk with epigenetic factors-and how this cross talk influences physiological processes-is still unexplored. Key epigenetic regulators of development and differentiation are the Polycomb group (PcG) of proteins, organized in the nucleus as microscopically visible foci. Here, we show that lamin A/C is evolutionarily required for correct PcG protein nuclear compartmentalization. Confocal microscopy supported by new algorithms for image analysis reveals that lamin A/C knock-down leads to PcG protein foci disassembly and PcG protein dispersion. This causes detachment from chromatin and defects in PcG protein-mediated higher-order structures, thereby leading to impaired PcG protein repressive functions. Using myogenic differentiation as a model, we found that reduced levels of lamin A/C at the onset of differentiation led to an anticipation of the myogenic program because of an alteration of PcG protein-mediated transcriptional repression. Collectively, our results indicate that lamin A/C can modulate transcription through the regulation of PcG protein epigenetic factors.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1330709721
Document Type :
Electronic Resource