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PMID: 10579635 Published · ppublish English Journal Article

Histone variants of H2A and H3 families are regulated during in vitro aging in the same manner as during differentiation.

Experimental gerontology ·Vol. 34 ·No. 6 ·1999-09-00 ·Pages 741-54

Rogakou EP, Sekeri-Pataryas KE

Abstract

In a previous communication, we showed that the H2A.1/H2A.2 histone variant ratio decreases in a linear manner during the in vitro aging of human diploid fibroblasts. This ratio is known to decrease in the same manner in progressive stages of development and in the process of differentiation, and is thus considered to be a biochemical marker for differentiation. A detailed analysis of the synthesis of H2A and H3 histone variants as a function of cumulative population doublings in the same in vitro cell system is presented in this study. Quantitative analysis of these variants in the G0 phase, synchronized fibroblasts has shown that their relative amount in chromatin, as well as their biosynthesis rate, change during in vitro aging of human diploid fibroblasts, revealing both up-and down-regulation of certain variants as a function of cumulative population doublings. Furthermore, we show by morphometric studies employing the seven distinct fibroblast morphotypes, as described by the Bayreuther classification, that this regulation is attributable to the replicative sub-populations. These results reveal that histone variants of the H2A and H3 families are regulated during in vitro aging in the same manner as that during differentiation.

MeSH Terms
Cell Differentiation/physiology Cell Division Cell Line Cellular Senescence/physiology Fibroblasts/cytology,metabolism Histones/metabolism Humans
Chemicals
Histones
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Rogakou E P
Institute of Biology, NRC Demokritos, Aghia Paraskevi, Attiki, Greece.
Sekeri-Pataryas K E
Article Info
Journal
Experimental gerontology
Abbr.
Exp Gerontol
ISSN
0531-5565
Published
1999-09-00
Pages
741-54
Language
English
Region
England
NLM ID
0047061
Subset
IM
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