Spindle positioning is an essential feature of asymmetric cell division. The conserved PAR proteins together with heterotrimeric G proteins control spindle positioning in animal cells, but how these are linked is not known. In C. elegans, PAR protein activity leads to asymmetric spindle placement through cortical asymmetry of Galpha regulators GPR-1/2. Here, we establish that the casein kinase 1 gamma CSNK-1 and a PIP(2) synthesis enzyme (PPK-1) transduce PAR polarity to asymmetric Galpha regulation. PPK-1 is posteriorly enriched in the one-celled embryo through PAR and CSNK-1 activities. Loss of CSNK-1 causes uniformly high PPK-1 levels, high symmetric cortical levels of GPR-1/2 and LIN-5, and increased spindle pulling forces. In contrast,...
AbstractThe first cleavage of C. elegans is asymmetric, generating daughter cells with different siz...
Asymmetric divisions produce daughter cells with different fates, and thus are critical for animal d...
AbstractG protein signaling pathways regulate mitotic spindle positioning during cell division in ma...
SummarySpindle positioning is an essential feature of asymmetric cell division. The conserved PAR pr...
AbstractBackground: Spindle positioning during an asymmetric cell division is of fundamental importa...
PAR proteins play important roles in establishing cytoplasmic polarity as well as regulating spindle...
SummaryAsymmetric localization of PAR proteins is a hallmark of polarized cells, but the mechanisms ...
Caenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins PAR-3, PA...
Asymmetric cell division is critical for generating daughter cells that possess distinct fates durin...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
AbstractBackground: The PAR proteins are known to be localized asymmetrically in polarized C. elegan...
Cell polarity relies on the asymmetric distribution of the conserved PAR proteins, which is regulate...
International audienceThe first division of the one-cell C. elegans embryo has been a fundamental mo...
PAR proteins (partitioning defective) are major regulators of cell polarity and asymmetric cell divi...
AbstractBackground: Generation of asymmetry in the one-cell embryo of C. elegans establishes the ant...
AbstractThe first cleavage of C. elegans is asymmetric, generating daughter cells with different siz...
Asymmetric divisions produce daughter cells with different fates, and thus are critical for animal d...
AbstractG protein signaling pathways regulate mitotic spindle positioning during cell division in ma...
SummarySpindle positioning is an essential feature of asymmetric cell division. The conserved PAR pr...
AbstractBackground: Spindle positioning during an asymmetric cell division is of fundamental importa...
PAR proteins play important roles in establishing cytoplasmic polarity as well as regulating spindle...
SummaryAsymmetric localization of PAR proteins is a hallmark of polarized cells, but the mechanisms ...
Caenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins PAR-3, PA...
Asymmetric cell division is critical for generating daughter cells that possess distinct fates durin...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
AbstractBackground: The PAR proteins are known to be localized asymmetrically in polarized C. elegan...
Cell polarity relies on the asymmetric distribution of the conserved PAR proteins, which is regulate...
International audienceThe first division of the one-cell C. elegans embryo has been a fundamental mo...
PAR proteins (partitioning defective) are major regulators of cell polarity and asymmetric cell divi...
AbstractBackground: Generation of asymmetry in the one-cell embryo of C. elegans establishes the ant...
AbstractThe first cleavage of C. elegans is asymmetric, generating daughter cells with different siz...
Asymmetric divisions produce daughter cells with different fates, and thus are critical for animal d...
AbstractG protein signaling pathways regulate mitotic spindle positioning during cell division in ma...