Cytoplasmic polyadenylation regulates mRNA stability and translation and is required for early development and synaptic plasticity. The GLD-2 poly(A) polymerase catalyzes cytoplasmic polyadenylation in the germline of metazoa. Among vertebrates, the enzyme is encoded by two isoforms of mRNA that differ only in the length of their 3′-UTRs. Here we focus on regulation of vertebrateGLD-2 mRNA. We show that the 3′-UTR of GLD-2 mRNA elicits its own polyadenylation and translational activation during frog oocyte maturation. We identify the sequence elements responsible for repression and activation, and demonstrate that CPEB and PUF proteins likely mediate repression in the resting oocyte. Regulated polyadenylation of GLD-2 mRNA is conserved, as ...
Translational regulation is heavily employed during developmental processes to control the timely ac...
AbstractThe GLD-2 class of poly(A) polymerases regulate the timing of translation of stored transcri...
AbstractCell cycle progression during oocyte maturation requires the strict temporal regulation of m...
Cytoplasmic polyadenylation regulates mRNA stability and translation and is required for early devel...
Cytoplasmic polyadenylation is important in the control of mRNA stability and translation, and for e...
Post-transcriptional gene regulation mechanisms decide on cellular mRNA activities. Essential gateke...
Post-transcriptional gene regulation mechanisms decide on cellular mRNA activities. Essential gateke...
AbstractCytoplasmic polyadenylation-induced mRNA translation is a hallmark of early animal developme...
AbstractCytoplasmic polyadenylation of mRNAs is involved in post-transcriptional regulation of genes...
The expression of certain maternal mRNAs during oocyte maturation is regulated by cytoplasmic polyad...
Post-transcriptional gene regulation mechanisms decide on cellular mRNA activities. Essential gate-k...
Xenopus oocytes contain several mRNAs that are mobilized into polysomes only at the completion of me...
mRNA regulation is crucial for many aspects of metazoan development and physiology, including regula...
AbstractTranslational control is prominent during meiotic maturation and early development. In this ...
International audienceCytoplasmic polyadenylation has an essential role in activating maternal mRNA ...
Translational regulation is heavily employed during developmental processes to control the timely ac...
AbstractThe GLD-2 class of poly(A) polymerases regulate the timing of translation of stored transcri...
AbstractCell cycle progression during oocyte maturation requires the strict temporal regulation of m...
Cytoplasmic polyadenylation regulates mRNA stability and translation and is required for early devel...
Cytoplasmic polyadenylation is important in the control of mRNA stability and translation, and for e...
Post-transcriptional gene regulation mechanisms decide on cellular mRNA activities. Essential gateke...
Post-transcriptional gene regulation mechanisms decide on cellular mRNA activities. Essential gateke...
AbstractCytoplasmic polyadenylation-induced mRNA translation is a hallmark of early animal developme...
AbstractCytoplasmic polyadenylation of mRNAs is involved in post-transcriptional regulation of genes...
The expression of certain maternal mRNAs during oocyte maturation is regulated by cytoplasmic polyad...
Post-transcriptional gene regulation mechanisms decide on cellular mRNA activities. Essential gate-k...
Xenopus oocytes contain several mRNAs that are mobilized into polysomes only at the completion of me...
mRNA regulation is crucial for many aspects of metazoan development and physiology, including regula...
AbstractTranslational control is prominent during meiotic maturation and early development. In this ...
International audienceCytoplasmic polyadenylation has an essential role in activating maternal mRNA ...
Translational regulation is heavily employed during developmental processes to control the timely ac...
AbstractThe GLD-2 class of poly(A) polymerases regulate the timing of translation of stored transcri...
AbstractCell cycle progression during oocyte maturation requires the strict temporal regulation of m...