Imprinted X inactivation and reprogramming in the preimplantation mouse embryo
Open Access
- 15 April 2005
- journal article
- review article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 14 (suppl_1) , R59-R64
- https://doi.org/10.1093/hmg/ddi117
Abstract
X chromosome inactivation is a developmentally regulated process that causes one of the two X chromosomes in normal female mammals to become transcriptionally silenced, thus equalizing the expression of X-linked genes between the sexes. Such dosage compensation depends upon dynamic genetic and epigenetic events occurring very early in development. X inactivation is controlled by an X inactivation centre that is associated with the expression of non-coding RNAs required for the silencing. Also associated with the inactive X are repressive histone modifications and polycomb protein-mediated states, which are progressively acquired during the inactivation process. In mouse, two forms of X inactivation have been described. Random X inactivation happens in the derivatives of the inner cell mass (ICM) giving rise to embryos where the maternally inherited X(Xm) is inactive in some cells and the paternally derived X (Xp) is inactive in others. Random X inactivation occurs around the time of implantation. Imprinted X inactivation, the preferential inactivation of the Xp chromosome, occurs earlier and, although there has been some debate as to the precise timing of initiation of this event, is apparent in all cells early in preimplantation development, then is subsequently confined to the cells of the extraembryonic lineages. A picture is emerging whereby initial epigenetic asymmetry between the two parental X chromosomes is reprogrammed in a lineage specific manner resulting in a switch from imprinted to random inactivation in embryonic derivatives. Neither the underlying reason nor the full extent of these early lineage specific epigenetic changes is known, but they may be correlated with more genome-wide reprogramming events essential for normal development.Keywords
This publication has 40 references indexed in Scilit:
- Polycomb Group Proteins Ring1A/B Link Ubiquitylation of Histone H2A to Heritable Gene Silencing and X InactivationDevelopmental Cell, 2004
- Reactivation of the Paternal X Chromosome in Early Mouse EmbryosScience, 2004
- Inheritance of a pre-inactivated paternal X chromosome in early mouse embryosNature, 2003
- Methylation of the mouse Xist gene in sperm and eggs correlates with imprinted Xist expression and paternal X–inactivationNature Genetics, 1995
- Gamete–specific methylation correlates with imprinting of the murine Xist geneNature Genetics, 1995
- Expression of X‐linked genes in androgenetic, gynogenetic, and normal mouse preimplantation embryosDevelopmental Genetics, 1995
- Evidence that random and imprinted Xist expression is controlled by preemptive methylationCell, 1994
- Expression of Xist during mouse development suggests a role in the initiation of X chromosome inactivationCell, 1993
- Cytological evidence for an inactive X chromosome in murine oogoniaCytogenetic and Genome Research, 1980
- HGPRT activity changes in preimplantation mouse embryosNature, 1978