AbstractAt the midblastula transition (MBT) during Xenopus laevis development, zygotic transcription begins [1], and the rapid, early cleavage cycles are replaced by cell-division cycles that lengthen and acquire G (gap) phases [2] and checkpoints [3–5]. This cell-cycle remodeling may result from either a loss of maternal products, the transcription of zygotic genes, or the replacement of maternal proteins by zygotic gene products. We have identified an example of the third possibility: distinct maternal and zygotic genes encoding a member of the minichromosome maintenance (MCM) protein family. The mcm genes were identified in yeast by mutations that blocked replication of artificial chromosomes or perturbed the G1/S transition in the cell ...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
Replication licensing factor (RLF) is involved in preventing re-replication of chromosomal DNA in a ...
The assembly and disassembly of protein complexes at replication origins play a crucial role in the ...
AbstractAt the midblastula transition (MBT) during Xenopus laevis development, zygotic transcription...
<div><p>Embryonic cell cycles of amphibians are rapid and lack zygotic transcription and checkpoint ...
Strict controls operate to limit DNA replication to a single round during each cell cycle. The Mcm2-...
AbstractBackground The origin recognition complex (ORC) and the minichromosome maintenance (MCM) pro...
Early Xenopus laevis embryonic cell cycles exemplify rapid, non-pathological cell cycles without che...
AbstractXenopus laevis early development is characterized by rapid and synchronous cleavage cycles, ...
<p>During S phase, following activation of the S phase CDKs and the DBF4-dependent kinases (DDK), do...
International audienceTemporal regulation of M-phases of the cell cycle requires precise molecular m...
AbstractDuringXenopusdevelopment, the early cell cycles consist of rapid oscillations between DNA sy...
The Xenopus cell free system has proved a good model system to study in vitro DNA replication and th...
The origin recognition complex (ORC) and the minichromosome maintenance (MCM) protein complex were i...
International audienceCell cycle regulation in Eukaryotes is based on common molecular actors and me...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
Replication licensing factor (RLF) is involved in preventing re-replication of chromosomal DNA in a ...
The assembly and disassembly of protein complexes at replication origins play a crucial role in the ...
AbstractAt the midblastula transition (MBT) during Xenopus laevis development, zygotic transcription...
<div><p>Embryonic cell cycles of amphibians are rapid and lack zygotic transcription and checkpoint ...
Strict controls operate to limit DNA replication to a single round during each cell cycle. The Mcm2-...
AbstractBackground The origin recognition complex (ORC) and the minichromosome maintenance (MCM) pro...
Early Xenopus laevis embryonic cell cycles exemplify rapid, non-pathological cell cycles without che...
AbstractXenopus laevis early development is characterized by rapid and synchronous cleavage cycles, ...
<p>During S phase, following activation of the S phase CDKs and the DBF4-dependent kinases (DDK), do...
International audienceTemporal regulation of M-phases of the cell cycle requires precise molecular m...
AbstractDuringXenopusdevelopment, the early cell cycles consist of rapid oscillations between DNA sy...
The Xenopus cell free system has proved a good model system to study in vitro DNA replication and th...
The origin recognition complex (ORC) and the minichromosome maintenance (MCM) protein complex were i...
International audienceCell cycle regulation in Eukaryotes is based on common molecular actors and me...
In full-grown Xenopus oocytes, cell-cycle regulators and an inactive form of maturation/M phase prom...
Replication licensing factor (RLF) is involved in preventing re-replication of chromosomal DNA in a ...
The assembly and disassembly of protein complexes at replication origins play a crucial role in the ...