AbstractDNA methylation is essential for the control of a number of biological mechanisms in mammals [1]. Mammalian development is accompanied by two major waves of genome-wide demethylation and remethylation: one during germ-cell development and the other after fertilisation [2–7]. Most previous studies have suggested that the genome-wide demethylation observed after fertilisation occurs passively, that is, by the lack of maintenance methylation following DNA replication and cell division [6,7], although one other study has reported that replication-independent demethylation may also occur during early embryogenesis [8]. Here, we report that genes that are highly methylated in sperm are rapidly demethylated in the zygote only hours after f...
<div><p>Genome-wide dynamic changes in DNA methylation are indispensable for germline development an...
Epigenetic reprogramming, characterized by loss of cytosine methylation and histone modifications, o...
SummaryThe reprogramming of parental methylomes is essential for embryonic development. In mammals, ...
AbstractDynamic epigenetic modification of the genome occurs during early development of the mouse. ...
Epigenetic marking systems confer stability of gene expression during mammalian development. Genome-...
Epigenetic marking systems confer stability of gene expression during mammalian development. Genome-...
SummaryThe epigenomes of mammalian sperm and oocytes, characterized by gamete-specific 5-methylcytos...
In mammals, cytosine methylation is predominantly restricted to CpG dinucleotides and stably distrib...
DNA methylation is a carrier of important regulatory information that undergoes global reprogramming...
After fertilization, the methylation status of the genome changes substantially when it undergoes ra...
Normal development of the mammalian embryo requires epigenetic reprogramming of the genome. The leve...
AbstractThe development of germ cells is a highly ordered process that begins during fetal growth an...
The transgenic sequences in the mouse line TKZ751 are demethylated on a DBA/2 inbred strain backgrou...
peer reviewedData derived from both pronuclear transplantation experiments and classical genetic exp...
The transgenic sequences in the mouse line TKZ751 are demethylated on a DBA/2 inbred strain backgrou...
<div><p>Genome-wide dynamic changes in DNA methylation are indispensable for germline development an...
Epigenetic reprogramming, characterized by loss of cytosine methylation and histone modifications, o...
SummaryThe reprogramming of parental methylomes is essential for embryonic development. In mammals, ...
AbstractDynamic epigenetic modification of the genome occurs during early development of the mouse. ...
Epigenetic marking systems confer stability of gene expression during mammalian development. Genome-...
Epigenetic marking systems confer stability of gene expression during mammalian development. Genome-...
SummaryThe epigenomes of mammalian sperm and oocytes, characterized by gamete-specific 5-methylcytos...
In mammals, cytosine methylation is predominantly restricted to CpG dinucleotides and stably distrib...
DNA methylation is a carrier of important regulatory information that undergoes global reprogramming...
After fertilization, the methylation status of the genome changes substantially when it undergoes ra...
Normal development of the mammalian embryo requires epigenetic reprogramming of the genome. The leve...
AbstractThe development of germ cells is a highly ordered process that begins during fetal growth an...
The transgenic sequences in the mouse line TKZ751 are demethylated on a DBA/2 inbred strain backgrou...
peer reviewedData derived from both pronuclear transplantation experiments and classical genetic exp...
The transgenic sequences in the mouse line TKZ751 are demethylated on a DBA/2 inbred strain backgrou...
<div><p>Genome-wide dynamic changes in DNA methylation are indispensable for germline development an...
Epigenetic reprogramming, characterized by loss of cytosine methylation and histone modifications, o...
SummaryThe reprogramming of parental methylomes is essential for embryonic development. In mammals, ...