Metazoans rely on the regulated translation of select maternal mRNAs to control oocyte maturation and the initial stages of embryogenesis. These transcripts usually remain silent until their translation is temporally and spatially required during early development. Different translational regulatory mechanisms, varying front cytoplasmic polyadenylation to localization of maternal mRNAs, have evolved to assure coordinated initiation of development. A common feature of these mechanisms is that they share a few key trans-acting factors. Increasing evidence suggest that ubiquitous conserved mRNA-binding factors, including the eukaryotic translation initiation factor 4E (eIF4E) and the cytoplasmic polyadenylation element binding protein (CPEB), ...
The translation of many maternal mRNAs is regulated by dynamic changes in poly(A) tail length. Durin...
AbstractThe translational control of many maternal mRNAs in oocytes and early embryos relies on chan...
International audienceThe fine spatial and temporal resolution of translation control can have a rap...
Metazoans rely on the regulated translation of select maternal mRNAs to control oocyte maturation an...
Fully grown oocytes undergo their further development in the absence of transcription. Completion of...
The expression of certain maternal mRNAs during oocyte maturation is regulated by cytoplasmic polyad...
AbstractThe poly(A)-binding protein Pab1p interacts directly with the eukaryotic translation initiat...
International audienceCPEB (cytoplasmic polyadenylation element-binding protein) is an important reg...
Cytoplasmic polyadenylation stimulates the translation of several dormant mRNAs during oocyte matura...
Meiotic cell-cycle progression in progesterone-stimulated Xenopus oocytes requires that the translat...
Early development in many animals is programmed by maternal mRNAs inherited by the fertilized egg. M...
Meiotic progression requires exquisitely coordinated translation of maternal messenger (m)RNA that h...
Meiotic progression requires exquisitely coordinated translation of maternal messenger (m)RNA that h...
Oocyte maturation, fertilization, and early embryonic development occur in the absence of gene trans...
Summary: Maternal mRNAs synthesized during oogenesis initiate the development of future generations....
The translation of many maternal mRNAs is regulated by dynamic changes in poly(A) tail length. Durin...
AbstractThe translational control of many maternal mRNAs in oocytes and early embryos relies on chan...
International audienceThe fine spatial and temporal resolution of translation control can have a rap...
Metazoans rely on the regulated translation of select maternal mRNAs to control oocyte maturation an...
Fully grown oocytes undergo their further development in the absence of transcription. Completion of...
The expression of certain maternal mRNAs during oocyte maturation is regulated by cytoplasmic polyad...
AbstractThe poly(A)-binding protein Pab1p interacts directly with the eukaryotic translation initiat...
International audienceCPEB (cytoplasmic polyadenylation element-binding protein) is an important reg...
Cytoplasmic polyadenylation stimulates the translation of several dormant mRNAs during oocyte matura...
Meiotic cell-cycle progression in progesterone-stimulated Xenopus oocytes requires that the translat...
Early development in many animals is programmed by maternal mRNAs inherited by the fertilized egg. M...
Meiotic progression requires exquisitely coordinated translation of maternal messenger (m)RNA that h...
Meiotic progression requires exquisitely coordinated translation of maternal messenger (m)RNA that h...
Oocyte maturation, fertilization, and early embryonic development occur in the absence of gene trans...
Summary: Maternal mRNAs synthesized during oogenesis initiate the development of future generations....
The translation of many maternal mRNAs is regulated by dynamic changes in poly(A) tail length. Durin...
AbstractThe translational control of many maternal mRNAs in oocytes and early embryos relies on chan...
International audienceThe fine spatial and temporal resolution of translation control can have a rap...