International audienceDuring oocyte development, meiosis arrests in prophase of the first division for a remarkably prolonged period firstly during oocyte growth, and then when awaiting the appropriate hormonal signals for egg release. This prophase arrest is finally unlocked when locally produced maturation initiation hormones (MIHs) trigger entry into M-phase. Here, we assess the current knowledge of the successive cellular and molecular mechanisms responsible for keeping meiotic progression on hold. We focus on two model organisms, the amphibian Xenopus laevis, and the hydrozoan jellyfish Clytia hemisphaerica. Conserved mechanisms govern the initial meiotic programme of the oocyte prior to oocyte growth and also, much later, the onset of...
SummaryThe kinase Mos, which activates intracellularly the MAP kinase pathway, is a key regulator of...
International audienceThe study of oocytes has made enormous contributions to the understanding of t...
International audienceEntry into mitosis or meiosis relies on the coordinated action of kinases and ...
International audienceDuring oocyte development, meiosis arrests in prophase of the first division f...
Maturation of vertebrate oocytes into haploid gametes relies on two consecutive meioses without inte...
International audienceThe development of an immature oocyte into a fertilizable gamete is a process ...
AbstractMitogen-activated protein kinase (MAPK) is one of the protein kinases activated during meiot...
AbstractMitogen-activated protein kinase (MAPK) is one of the protein kinases activated during meiot...
International audienceMitogen-activated protein kinase (MAPK) is one of the protein kinases activate...
Fully grown Xenopus oocytes contain a stockpile of inactive Maturation Promoting Factor, commonly te...
AbstractXenopus oocytes arrested in prophase I resume meiotic division in response to progesterone a...
International audienceA cytoplasmic activity in mature oocytes responsible for second meiotic metaph...
Xenopus oocytes are arrested in prophase of first meiosis, which can be considered equivalent to G 2...
International audienceXenopus oocytes are arrested in prophase of the first meiotic division. In res...
AbstractMaintenance of meiotic prophase arrest in fully grown vertebrate oocytes depends on an eleva...
SummaryThe kinase Mos, which activates intracellularly the MAP kinase pathway, is a key regulator of...
International audienceThe study of oocytes has made enormous contributions to the understanding of t...
International audienceEntry into mitosis or meiosis relies on the coordinated action of kinases and ...
International audienceDuring oocyte development, meiosis arrests in prophase of the first division f...
Maturation of vertebrate oocytes into haploid gametes relies on two consecutive meioses without inte...
International audienceThe development of an immature oocyte into a fertilizable gamete is a process ...
AbstractMitogen-activated protein kinase (MAPK) is one of the protein kinases activated during meiot...
AbstractMitogen-activated protein kinase (MAPK) is one of the protein kinases activated during meiot...
International audienceMitogen-activated protein kinase (MAPK) is one of the protein kinases activate...
Fully grown Xenopus oocytes contain a stockpile of inactive Maturation Promoting Factor, commonly te...
AbstractXenopus oocytes arrested in prophase I resume meiotic division in response to progesterone a...
International audienceA cytoplasmic activity in mature oocytes responsible for second meiotic metaph...
Xenopus oocytes are arrested in prophase of first meiosis, which can be considered equivalent to G 2...
International audienceXenopus oocytes are arrested in prophase of the first meiotic division. In res...
AbstractMaintenance of meiotic prophase arrest in fully grown vertebrate oocytes depends on an eleva...
SummaryThe kinase Mos, which activates intracellularly the MAP kinase pathway, is a key regulator of...
International audienceThe study of oocytes has made enormous contributions to the understanding of t...
International audienceEntry into mitosis or meiosis relies on the coordinated action of kinases and ...