SummaryAdult germline stem cells (AGSCs) self-renew (Thy1+ enriched) or commit to gametogenesis (Kit+ enriched). To better understand how chromatin regulates AGSC biology and gametogenesis, we derived stage-specific high-resolution profiles of DNA methylation, 5hmC, histone modifications/variants, and RNA-seq in AGSCs and during spermatogenesis. First, we define striking signaling and transcriptional differences between AGSC types, involving key self-renewal and proliferation pathways. Second, key pluripotency factors (e.g., Nanog) are silent in AGSCs and bear particular chromatin/DNAme attributes that may “poise” them for reactivation after fertilization. Third, AGSCs display chromatin “poising/bivalency” of enhancers and promoters for emb...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Germ cells are unique in engendering totipotency, yet the mechanisms underlying this capacity remain...
AbstractRapidly after gamete fusion, the sperm nucleus loses its specific chromatin conformation and...
SummaryAdult germline stem cells (AGSCs) self-renew (Thy1+ enriched) or commit to gametogenesis (Kit...
Spermatogonial stem and progenitor cells (SSCs) generate adult male gametes. During in vitro expansi...
Spermatogonial stem and progenitor cells (SSCs) generate adult male gametes. During in vitro expansi...
Human adult spermatogonial stem cells (hSSCs) must balance self-renewal and differentiation. To unde...
In mammals, spermatogonial cells exit quiescence immediately after birth and initiate a life-long eq...
AbstractThe development of germ cells is a highly ordered process that begins during fetal growth an...
In mammals, germ cells guarantee the inheritance of genetic and epigenetic information across genera...
Sperm chromatin not only has a unique structure to condense and protect the paternal DNA in transit,...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
The genes involved in the cellular response to DNA damage are crucial for ensuring DNA integrity dur...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Germ cells are unique in engendering totipotency, yet the mechanisms underlying this capacity remain...
AbstractRapidly after gamete fusion, the sperm nucleus loses its specific chromatin conformation and...
SummaryAdult germline stem cells (AGSCs) self-renew (Thy1+ enriched) or commit to gametogenesis (Kit...
Spermatogonial stem and progenitor cells (SSCs) generate adult male gametes. During in vitro expansi...
Spermatogonial stem and progenitor cells (SSCs) generate adult male gametes. During in vitro expansi...
Human adult spermatogonial stem cells (hSSCs) must balance self-renewal and differentiation. To unde...
In mammals, spermatogonial cells exit quiescence immediately after birth and initiate a life-long eq...
AbstractThe development of germ cells is a highly ordered process that begins during fetal growth an...
In mammals, germ cells guarantee the inheritance of genetic and epigenetic information across genera...
Sperm chromatin not only has a unique structure to condense and protect the paternal DNA in transit,...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
The genes involved in the cellular response to DNA damage are crucial for ensuring DNA integrity dur...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Chromatin of male and female gametes undergoes a number of reprogramming events during the transitio...
Germ cells are unique in engendering totipotency, yet the mechanisms underlying this capacity remain...
AbstractRapidly after gamete fusion, the sperm nucleus loses its specific chromatin conformation and...