AbstractBackground: The PAR proteins are known to be localized asymmetrically in polarized C. elegans, Drosophila, and human cells and to participate in several cellular processes, including asymmetric cell division and spindle orientation. Although astral microtubules are known to play roles in these processes, their behavior during these events remains poorly understood.Results: We have developed a method that makes it possible to examine the residence time of individual astral microtubules at the cell cortex of developing embryos. Using this method, we found that microtubules are more dynamic at the posterior cortex of the C. elegans embryo compared to the anterior cortex during spindle displacement. We further observed that this asymmet...
AbstractAt the one-cell stage, the C. elegans embryo becomes polarized along the anterior-posterior ...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
SummaryInteractions between microtubules and the cell cortex play a critical role in positioning org...
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...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
AbstractThe par-3 gene is required for establishing polarity in early C. elegans embryos. Embryos fr...
AbstractThe C. elegans PAR proteins PAR-3, PAR-6, and PKC-3 are asymmetrically localized and have es...
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...
SummaryAsymmetric localization of PAR proteins is a hallmark of polarized cells, but the mechanisms ...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
AbstractAt the one-cell stage, the C. elegans embryo becomes polarized along the anterior-posterior ...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
SummaryInteractions between microtubules and the cell cortex play a critical role in positioning org...
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...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
AbstractThe par-3 gene is required for establishing polarity in early C. elegans embryos. Embryos fr...
AbstractThe C. elegans PAR proteins PAR-3, PAR-6, and PKC-3 are asymmetrically localized and have es...
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...
SummaryAsymmetric localization of PAR proteins is a hallmark of polarized cells, but the mechanisms ...
AbstractCaenorhabditis elegans embryonic polarity requires the asymmetrically distributed proteins P...
AbstractAt the one-cell stage, the C. elegans embryo becomes polarized along the anterior-posterior ...
AbstractBackground: The PAR proteins are part of an ancient and widely conserved machinery for polar...
SummaryInteractions between microtubules and the cell cortex play a critical role in positioning org...