International audienceThe study of oocytes has made enormous contributions to the understanding of the G 2 /M transition. The complementarity of investigations carried out on various model organisms has led to the identification of the M-phase promoting factor (MPF) and to unravel the basis of cell cycle regulation. Thanks to the power of biochemical approaches offered by frog oocytes, this model has allowed to identify the core signaling components involved in the regulation of M-phase. A central emerging layer of regulation of cell division regards protein translation. Oocytes are a unique model to tackle this question as they accumulate large quantities of dormant mRNAs to be used during meiosis resumption and progression, as well as the...
The oocytes of several organisms—most frequently those of the African clawed toad Xenopus laevis—hav...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
A cell integrates mitogenic signals received at the plasma membrane with intracellular biochemical c...
The expression of certain maternal mRNAs during oocyte maturation is regulated by cytoplasmic polyad...
International audienceThe fine spatial and temporal resolution of translation control can have a rap...
During vertebrate oocyte maturation, the chromosomes progress to and arrest at metaphase of meiosis ...
International audienceThe quality of oocytes depends largely on the capacity to resume meiotic matur...
AbstractCell cycle progression during oocyte maturation requires the strict temporal regulation of m...
International audienceThe quality of oocytes depends largely on the capacity to resume meiotic matur...
International audienceThe quality of oocytes depends largely on the capacity to resume meiotic matur...
Abstract: The understanding of cell cycle regulation benefited greatly from omic approaches. Because...
International audienceDuring oocyte development, meiosis arrests in prophase of the first division f...
International audienceDuring oocyte development, meiosis arrests in prophase of the first division f...
Oocyte maturation and early embryo development occur in vertebrates in the near absence of transcrip...
The oocytes of several organisms—most frequently those of the African clawed toad Xenopus laevis—hav...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
A cell integrates mitogenic signals received at the plasma membrane with intracellular biochemical c...
The expression of certain maternal mRNAs during oocyte maturation is regulated by cytoplasmic polyad...
International audienceThe fine spatial and temporal resolution of translation control can have a rap...
During vertebrate oocyte maturation, the chromosomes progress to and arrest at metaphase of meiosis ...
International audienceThe quality of oocytes depends largely on the capacity to resume meiotic matur...
AbstractCell cycle progression during oocyte maturation requires the strict temporal regulation of m...
International audienceThe quality of oocytes depends largely on the capacity to resume meiotic matur...
International audienceThe quality of oocytes depends largely on the capacity to resume meiotic matur...
Abstract: The understanding of cell cycle regulation benefited greatly from omic approaches. Because...
International audienceDuring oocyte development, meiosis arrests in prophase of the first division f...
International audienceDuring oocyte development, meiosis arrests in prophase of the first division f...
Oocyte maturation and early embryo development occur in vertebrates in the near absence of transcrip...
The oocytes of several organisms—most frequently those of the African clawed toad Xenopus laevis—hav...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...