Embryonic stem (ES) cells are important tools in the study of gene function and may also become important in cell therapy applications. Establishment of stable XX ES cell lines from mouse blastocysts is relatively problematic owing to frequent loss of one of the two X chromosomes. Here we show that DNA methylation is globally reduced in XX ES cell lines and that this is attributable to the presence of two active X chromosomes. Hypomethylation affects both repetitive and unique sequences, the latter including differentially methylated regions that regulate expression of parentally imprinted genes. Methylation of differentially methylated regions can be restored coincident with elimination of an X chromosome in early-passage parthenogenetic E...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
How the epigenome of one cell type is remodeled during reprogramming into another unrelated type of ...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
A dramatic difference in global DNA methylation between male and female cells characterizes mouse em...
Summary: A dramatic difference in global DNA methylation between male and female cells characterizes...
Summary A dramatic difference in global DNA methylation between male and female cells characterizes ...
A dramatic difference in global DNA methylation between male and female cells characterizes mouse em...
A dramatic difference in global DNA methylation between male and female cells characterizes mouse em...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
How the epigenome of one cell type is remodeled during reprogramming into another unrelated type of ...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
Embryonic stem (ES) cells are important tools in the study of gene function and may also become impo...
A dramatic difference in global DNA methylation between male and female cells characterizes mouse em...
Summary: A dramatic difference in global DNA methylation between male and female cells characterizes...
Summary A dramatic difference in global DNA methylation between male and female cells characterizes ...
A dramatic difference in global DNA methylation between male and female cells characterizes mouse em...
A dramatic difference in global DNA methylation between male and female cells characterizes mouse em...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
How the epigenome of one cell type is remodeled during reprogramming into another unrelated type of ...