Title of article :
Reprogramming the Maternal Zebrafish Genome after Fertilization to Match the Paternal Methylation Pattern
Author/Authors :
Magdalena E. Potok، نويسنده , , David A. Nix، نويسنده , , Timothy J. Parnell، نويسنده , , Bradley R. Cairns، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2013
Pages :
14
From page :
759
To page :
772
Abstract :
Early vertebrate embryos must achieve totipotency and prepare for zygotic genome activation (ZGA). To understand this process, we determined the DNA methylation (DNAme) profiles of zebrafish gametes, embryos at different stages, and somatic muscle and compared them to gene activity and histone modifications. Sperm chromatin patterns are virtually identical to those at ZGA. Unexpectedly, the DNA of many oocyte genes important for germline functions (i.e., piwil1) or early development (i.e., hox genes) is methylated, but the loci are demethylated during zygotic cleavage stages to precisely the state observed in sperm, even in parthenogenetic embryos lacking a replicating paternal genome. Furthermore, this cohort constitutes the genes and loci that acquire DNAme during development (i.e., ZGA to muscle). Finally, DNA methyltransferase inhibition experiments suggest that DNAme silences particular gene and chromatin cohorts at ZGA, preventing their precocious expression. Thus, zebrafish achieve a totipotent chromatin state at ZGA through paternal genome competency and maternal genome DNAme reprogramming.
Journal title :
CELL
Serial Year :
2013
Journal title :
CELL
Record number :
1021700
Link To Document :
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