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Epigenome and chromatin structure in human embryonic stem cells undergoing differentiation
E Bartova, G Galiova, J Krejci, A Harnicarova, L Strasak, S Kozubek
Jazyk angličtina Země Spojené státy americké
Typ dokumentu práce podpořená grantem
NLK
Free Medical Journals
od 1992 do Před 1 rokem
Wiley Online Library (archiv)
od 1996-01-01 do 2012-12-31
Wiley Free Content
od 1996 do Před 1 rokem
- MeSH
- buněčná diferenciace účinky léků MeSH
- buněčné linie MeSH
- chromatin MeSH
- embryonální kmenové buňky cytologie metabolismus účinky léků MeSH
- epigeneze genetická genetika MeSH
- histony metabolismus MeSH
- lidé MeSH
- tretinoin farmakologie MeSH
- tvar buňky MeSH
- vývojová regulace genové exprese MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- práce podpořená grantem MeSH
Epigenetic histone (H3) modification patterns and the nuclear radial arrangement of select genetic elements were compared in human embryonic stem cells (hESCs) before and after differentiation. H3K9 acetylation, H3K9 trimethylation, and H3K79 monomethylation were reduced at the nuclear periphery of differentiated hESCs. Differentiation coincided with centromere redistribution, as evidenced by perinucleolar accumulation of the centromeric markers CENP-A and H3K9me3, central repositioning of centromeres 1, 5, 19, and rearrangement of other centromeres at the nuclear periphery. The radial positions of PML, RARalpha genes, and human chromosomes 10, 12, 15, 17, and 19 remained relatively stable as hESCs differentiated. However, the female inactive H3K27-trimethylated X chromosome occupied a more peripheral nuclear position in differentiated cells. Thus, pluripotent and differentiated hESCs have distinct nuclear patterns of heterochromatic structures (centromeres and inactive X chromosome) and epigenetic marks (H3K9me3, and H3K27me3), while relatively conserved gene density-related radial chromatin distributions are already largely established in undifferentiated hES cells. (c) 2008 Wiley-Liss, Inc.
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- $a Epigenetic histone (H3) modification patterns and the nuclear radial arrangement of select genetic elements were compared in human embryonic stem cells (hESCs) before and after differentiation. H3K9 acetylation, H3K9 trimethylation, and H3K79 monomethylation were reduced at the nuclear periphery of differentiated hESCs. Differentiation coincided with centromere redistribution, as evidenced by perinucleolar accumulation of the centromeric markers CENP-A and H3K9me3, central repositioning of centromeres 1, 5, 19, and rearrangement of other centromeres at the nuclear periphery. The radial positions of PML, RARalpha genes, and human chromosomes 10, 12, 15, 17, and 19 remained relatively stable as hESCs differentiated. However, the female inactive H3K27-trimethylated X chromosome occupied a more peripheral nuclear position in differentiated cells. Thus, pluripotent and differentiated hESCs have distinct nuclear patterns of heterochromatic structures (centromeres and inactive X chromosome) and epigenetic marks (H3K9me3, and H3K27me3), while relatively conserved gene density-related radial chromatin distributions are already largely established in undifferentiated hES cells. (c) 2008 Wiley-Liss, Inc.
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