We have used double-stranded RNA-mediated interference (RNAi) to study Drosophila cytokinesis. We show that double-stranded RNAs for anillin, acGAP, pavarotti, rho1, pebble, spaghetti squash, syntaxin1A, and twinstar all disrupt cytokinesis in S2 tissue culture cells, causing gene-specific phenotypes. Our phenotypic analyses identify genes required for different aspects of cytokinesis, such as central spindle formation, actin accumulation at the cell equator, contractile ring assembly or disassembly, and membrane behavior. Moreover, the cytological phenotypes elicited by RNAi reveal simultaneous disruption of multiple aspects of cytokinesis. These phenotypes suggest interactions between central spindle microtubules, the actin-based c...
Drosophila male meiosis offers unique opportunities for mutational dissection of cytokinesis. This s...
Drosophila cell lines are valuable tools to study a number of cellular processes, including DNA dama...
Cytokinesis separates the cytoplasm and the duplicated genome into two daughter cells at the end of ...
AbstractMuch of our understanding of animal cell cytokinesis centers on the regulation of the equato...
AbstractMuch of our understanding of animal cell cytokinesis centers on the regulation of the equato...
RNAi screens have, to date, identified many genes required for mitotic divisions of Drosophila tissu...
To facilitate the genetic analysis of muscle assembly and maintenance, we have developed a method fo...
<div><p>Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytos...
Recent technological advances in microscopy have enabled cell-based whole genome screens, but the an...
During late anaphase and telophase, animal cells develop a bundle of antiparallel, interdigitating m...
Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal ...
Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal ...
Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal ...
RNA interference (RNAi) is a powerful and widely used approach to investigate gene function, but a m...
Drosophila cell lines are valuable tools to study a number of cellular processes, including DNA dama...
Drosophila male meiosis offers unique opportunities for mutational dissection of cytokinesis. This s...
Drosophila cell lines are valuable tools to study a number of cellular processes, including DNA dama...
Cytokinesis separates the cytoplasm and the duplicated genome into two daughter cells at the end of ...
AbstractMuch of our understanding of animal cell cytokinesis centers on the regulation of the equato...
AbstractMuch of our understanding of animal cell cytokinesis centers on the regulation of the equato...
RNAi screens have, to date, identified many genes required for mitotic divisions of Drosophila tissu...
To facilitate the genetic analysis of muscle assembly and maintenance, we have developed a method fo...
<div><p>Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytos...
Recent technological advances in microscopy have enabled cell-based whole genome screens, but the an...
During late anaphase and telophase, animal cells develop a bundle of antiparallel, interdigitating m...
Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal ...
Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal ...
Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal ...
RNA interference (RNAi) is a powerful and widely used approach to investigate gene function, but a m...
Drosophila cell lines are valuable tools to study a number of cellular processes, including DNA dama...
Drosophila male meiosis offers unique opportunities for mutational dissection of cytokinesis. This s...
Drosophila cell lines are valuable tools to study a number of cellular processes, including DNA dama...
Cytokinesis separates the cytoplasm and the duplicated genome into two daughter cells at the end of ...