AbstractIn many organisms, like Caenorhabditis elegans and Drosophila melanogaster, establishment of spatial patterns and definition of cell fate are driven by the segregation of determinants in response to spatial cues, as early as oogenesis or fertilization. In these organisms, a family of conserved proteins, the PAR proteins, is involved in the asymmetric distribution of cytoplasmic determinants and in the control of asymmetric divisions. In the mouse embryo, it is only at the 8-cell stage during compaction that asymmetries, leading to cellular diversification and blastocyst morphogenesis, are first observed. However, it has been suggested that developmentally relevant asymmetries could be established already in the oocyte and during fer...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
The par genes were discovered in genetic screens for regulators of cytoplasmic partitioning in the e...
AbstractThe establishment of polarity in the embryo is fundamental for the correct development of an...
AbstractThe evolutionarily conserved partitioning defective (PAR) protein PAR-3 is pivotal for estab...
AbstractThe par-3 gene is required for establishing polarity in early C. elegans embryos. Embryos fr...
The axis of asymmetric cell division is controlled to determine the future position of differentiate...
The axis of asymmetric cell division is controlled to determine the future position of differentiate...
Generation of inside cells that develop into inner cell mass (ICM) and outside cells that develop in...
AbstractMeiotic maturation in mammals is characterized by two asymmetric divisions, leading to the f...
AbstractThe first cleavage of C. elegans is asymmetric, generating daughter cells with different siz...
BACKGROUND: The PAR proteins are known to be localized asymmetrically in polarized C. elegans, Droso...
BACKGROUND: The PAR proteins are known to be localized asymmetrically in polarized C. elegans, Droso...
AbstractBackground: The PAR proteins are known to be localized asymmetrically in polarized C. elegan...
AbstractThe nematode PAR-1 gene is required for asymmetric cell divisions during development. Recent...
SummaryAsymmetric localization of PAR proteins is a hallmark of polarized cells, but the mechanisms ...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
The par genes were discovered in genetic screens for regulators of cytoplasmic partitioning in the e...
AbstractThe establishment of polarity in the embryo is fundamental for the correct development of an...
AbstractThe evolutionarily conserved partitioning defective (PAR) protein PAR-3 is pivotal for estab...
AbstractThe par-3 gene is required for establishing polarity in early C. elegans embryos. Embryos fr...
The axis of asymmetric cell division is controlled to determine the future position of differentiate...
The axis of asymmetric cell division is controlled to determine the future position of differentiate...
Generation of inside cells that develop into inner cell mass (ICM) and outside cells that develop in...
AbstractMeiotic maturation in mammals is characterized by two asymmetric divisions, leading to the f...
AbstractThe first cleavage of C. elegans is asymmetric, generating daughter cells with different siz...
BACKGROUND: The PAR proteins are known to be localized asymmetrically in polarized C. elegans, Droso...
BACKGROUND: The PAR proteins are known to be localized asymmetrically in polarized C. elegans, Droso...
AbstractBackground: The PAR proteins are known to be localized asymmetrically in polarized C. elegan...
AbstractThe nematode PAR-1 gene is required for asymmetric cell divisions during development. Recent...
SummaryAsymmetric localization of PAR proteins is a hallmark of polarized cells, but the mechanisms ...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
The par genes were discovered in genetic screens for regulators of cytoplasmic partitioning in the e...
AbstractThe establishment of polarity in the embryo is fundamental for the correct development of an...