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  • Repressive but not activating epigenetic modifications are aberrant on the inactive X chromosome in live cloned cattle.

Repressive but not activating epigenetic modifications are aberrant on the inactive X chromosome in live cloned cattle.

Development, growth & differentiation (2009-08-01)
Cao Geng-Sheng, Gao Yu, Wang Kun, Ding Fang-Rong, Li Ning
ABSTRACT

X inactivation is the process of a chromosome-wide silencing of the majority of genes on the X chromosome during early mammalian development. This process may be aberrant in cloned animals. Here we show that repressive modifications, such as methylation of DNA, and the presence of methylated histones, H3K9me2 and H3K27me3, exhibit distinct aberrance on the inactive X chromosome in live clones. In contrast, H3K4me3, an active gene marker, is obviously missing from the inactive X chromosome in all cattle studied. This suggests that the disappearance of active histone modifications (H3K4me3) seems to be more important for X inactivation than deposition of marks associated with heterochromatin (DNA methylation, H3K27me3 and H3K9me2). It also implies that even apparently normal clones may have subtle abnormalities in repressive, but not activating epigenetic modifications on the inactive X when they survive to term. We also found that the histone H3 methylations were enriched and co-localized at q21-31 of the active X chromosome, which may be associated with an abundance of LINE1 repeat elements.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-dimethyl-Histone H3 (Lys9) Antibody, Upstate®, from rabbit
Sigma-Aldrich
Anti-trimethyl-Histone H3 (Lys27) Antibody, Upstate®, from rabbit