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MacroH2A histone variants maintain nuclear organization and heterochromatin architecture
Journal article   Open access

MacroH2A histone variants maintain nuclear organization and heterochromatin architecture

J. Douet, D. Corujo, R. Malinverni, J. Renauld, V. Sansoni, M.P. Marjanović, N. Cantariño, V. Valero, F. Mongelard, P. Bouvet, …
Journal of Cell Science, Vol.130(9), pp.1570-1582
2017

Abstract

DNA repeats Heterochromatin Histone variant Nuclear organization 45s ribosomal dna DNA DNA 5S DXZ4 protein histone histone H3 histone macroh2a1 histone macroh2a2 lamin B lamin B1 nucleophosmin peptides and proteins repetitive DNA SAT2 protein unclassified drug histone lamin B lamin B1 lysine macroH2A histone protein binding animal cell Article cell composition cell disruption cell fate cellular, subcellular and molecular biological phenomena and functions chromatin structure constitutive heterochromatin controlled study cytoarchitecture DNA sequence embryo gene deletion gene expression histone methylation human human cell loss of function mutation male mouse nonhuman nuclear lamina nuclear organization nuclear reprogramming nucleolus nucleosome priority journal protein binding protein function protein protein interaction HEK293 cell line Hep-G2 cell line heterochromatin metabolism methylation ultrastructure Cell Nucleolus HEK293 Cells Hep G2 Cells Heterochromatin Histones Humans Lamin Type B Lysine Male Methylation Protein Binding
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85018310282&doi=10.1242%2fjcs.199216&partnerID=40&md5=de3f81d0fac3c6815945cb4cc4ca4bb8View
url
https://doi.org/10.1242/jcs.199216View
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