AbstractIn metazoans, many mRNAs needed for embryogenesis are produced during oogenesis and must be tightly regulated during the complex events of oocyte development. In C. elegans, translation of the Notch receptor GLP-1 is repressed during oogenesis and is then activated specifically in anterior cells of the early embryo. The KH domain protein GLD-1 represses glp-1 translation during early stages of meiosis, but the factors that repress glp-1 during late oogenesis are not known. Here, we provide evidence that the PUF domain protein PUF-5 and two nearly identical PUF proteins PUF-6 and PUF-7 function during a specific period of oocyte differentiation to repress glp-1 and other maternal mRNAs. Depletion of PUF-5 and PUF-6/7 together caused ...
Translational repression is often accompanied by mRNA degradation. In contrast, many mRNAs in germ c...
The oocyte‐to‐embryo transition (OET) is thought to be mainly driven by post‐transcriptional gene re...
Oocyte maturation in all species is controlled by a protein complex termed the maturation promoting ...
AbstractIn metazoans, many mRNAs needed for embryogenesis are produced during oogenesis and must be ...
AbstractCell differentiation requires integration of gene expression controls with dynamic changes i...
The development of an organism and its adult homeostasis rely on regulatory mechanisms that control ...
AbstractCell differentiation requires integration of gene expression controls with dynamic changes i...
ABSTRACT RNA-binding proteins (RBPs) coordinate cell fate specification and differentiation in a var...
Maternally supplied mRNAs encode proteins that pattern early embryos in many species. In the nematod...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
The oocyte-to-embryo transition (OET) is thought to be mainly driven by post-transcriptional gene re...
An extended meiotic prophase is a hallmark of oogenesis. Hormonal signaling activates the CDK1/cycli...
Translational repression is often accompanied by mRNA degradation. In contrast, many mRNAs in germ c...
The oocyte‐to‐embryo transition (OET) is thought to be mainly driven by post‐transcriptional gene re...
Oocyte maturation in all species is controlled by a protein complex termed the maturation promoting ...
AbstractIn metazoans, many mRNAs needed for embryogenesis are produced during oogenesis and must be ...
AbstractCell differentiation requires integration of gene expression controls with dynamic changes i...
The development of an organism and its adult homeostasis rely on regulatory mechanisms that control ...
AbstractCell differentiation requires integration of gene expression controls with dynamic changes i...
ABSTRACT RNA-binding proteins (RBPs) coordinate cell fate specification and differentiation in a var...
Maternally supplied mRNAs encode proteins that pattern early embryos in many species. In the nematod...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
The oocyte-to-embryo transition (OET) is thought to be mainly driven by post-transcriptional gene re...
An extended meiotic prophase is a hallmark of oogenesis. Hormonal signaling activates the CDK1/cycli...
Translational repression is often accompanied by mRNA degradation. In contrast, many mRNAs in germ c...
The oocyte‐to‐embryo transition (OET) is thought to be mainly driven by post‐transcriptional gene re...
Oocyte maturation in all species is controlled by a protein complex termed the maturation promoting ...