In Saccharomyces cerevisiae, Kar9p, one player in spindle alignment, guides the bud-ward spindle pole by linking astral microtubule plus ends to Myo2p-based transport along actin cables generated by the formins Bni1p and Bnr1p and the polarity determinant Bud6p. Initially, Kar9p labels both poles but progressively singles out the bud-ward pole. Here, we show that this polarization requires cell polarity determinants, actin cables, and microtubules. Indeed, in a bud6 bni1 mutant or upon direct depolymerization of actin cables Kar9p symmetry increased. Furthermore, symmetry was selec-tively induced by myo2 alleles, preventing Kar9p binding to the Myo2p cargo domain. Kar9p polarity was rebuilt after transient disruption of microtubules, depen...
AbstractBackground: Two genetic ‘pathways' contribute to the fidelity of nuclear segregation during ...
The assembly of filamentous actin is essential for polarized bud growth in budding yeast. Actin cabl...
AbstractRecent studies have significantly advanced our understanding of how a dividing cell asymmetr...
In Saccharomyces cerevisiae, spindle orientation is controlled by a temporal and spatial program of ...
SummaryBackgroundBudding yeast is a unique model for exploring differential fate in a cell dividing ...
AbstractSpindle alignment is the process in which the two spindle poles are directed toward preselec...
Spindle orientation is critical for accurate chromosomal segregation in eukaryotic cells. In the yea...
AbstractBackground: Two genetic ‘pathways’ contribute to the fidelity of nuclear segregation during ...
SummaryBackgroundBudding yeast is a unique model to dissect spindle orientation in a cell dividing a...
In the budding yeast Saccharomyces cerevisiae, the mitotic spindle must align along the mother-bud a...
In budding yeast, spindle polarity relies on a precise temporal program of cytoplasmic microtu-bule–...
Positioning of the mitotic spindle is crucial for proper cell division. In the budding yeast Sacchar...
Spindle orientation is critical for accurate chromosomal segregation in eukaryotic cells. In the yea...
Positioning of the mitotic spindle is crucial for proper cell division. In the budding yeast Sacchar...
<div><p>Positioning of the mitotic spindle is crucial for proper cell division. In the budding yeast...
AbstractBackground: Two genetic ‘pathways' contribute to the fidelity of nuclear segregation during ...
The assembly of filamentous actin is essential for polarized bud growth in budding yeast. Actin cabl...
AbstractRecent studies have significantly advanced our understanding of how a dividing cell asymmetr...
In Saccharomyces cerevisiae, spindle orientation is controlled by a temporal and spatial program of ...
SummaryBackgroundBudding yeast is a unique model for exploring differential fate in a cell dividing ...
AbstractSpindle alignment is the process in which the two spindle poles are directed toward preselec...
Spindle orientation is critical for accurate chromosomal segregation in eukaryotic cells. In the yea...
AbstractBackground: Two genetic ‘pathways’ contribute to the fidelity of nuclear segregation during ...
SummaryBackgroundBudding yeast is a unique model to dissect spindle orientation in a cell dividing a...
In the budding yeast Saccharomyces cerevisiae, the mitotic spindle must align along the mother-bud a...
In budding yeast, spindle polarity relies on a precise temporal program of cytoplasmic microtu-bule–...
Positioning of the mitotic spindle is crucial for proper cell division. In the budding yeast Sacchar...
Spindle orientation is critical for accurate chromosomal segregation in eukaryotic cells. In the yea...
Positioning of the mitotic spindle is crucial for proper cell division. In the budding yeast Sacchar...
<div><p>Positioning of the mitotic spindle is crucial for proper cell division. In the budding yeast...
AbstractBackground: Two genetic ‘pathways' contribute to the fidelity of nuclear segregation during ...
The assembly of filamentous actin is essential for polarized bud growth in budding yeast. Actin cabl...
AbstractRecent studies have significantly advanced our understanding of how a dividing cell asymmetr...