SummaryMutants in the actin nucleators Cappuccino and Spire disrupt the polarized microtubule network in the Drosophila oocyte that defines the anterior-posterior axis, suggesting that microtubule organization depends on actin. Here, we show that Cappuccino and Spire organize an isotropic mesh of actin filaments in the oocyte cytoplasm. capu and spire mutants lack this mesh, whereas overexpressed truncated Cappuccino stabilizes the mesh in the presence of Latrunculin A and partially rescues spire mutants. Spire overexpression cannot rescue capu mutants, but prevents actin mesh disassembly at stage 10B and blocks late cytoplasmic streaming. We also show that the actin mesh regulates microtubules indirectly, by inhibiting kinesin-dependent cy...
During Drosophila development, the formin actin nucleator Cappuccino (Capu) helps build a cytoplasmi...
cappuccino (capu) is a Drosophila melanogaster gene required for establishing the dorsal-ventral and...
International audienceCoordination between actin filaments and microtubules is critical to complete ...
SummaryMutants in the actin nucleators Cappuccino and Spire disrupt the polarized microtubule networ...
Coordination of actin and microtubule cytoskeletal networks is required for a number of fundamental ...
The Drosophila formin Cappuccino (Capu) creates an actin mesh-like structure that traverses the oocy...
Formin family actin nucleators are potential coordinators of the actin and microtubule cytoskeletons...
Two actin nucleators, Spire and Cappuccino, collaborate to build a network of actin filaments that c...
Two actin nucleators, Spire and Cappuccino, collaborate to build a network of actin filaments that c...
The Drosophila formin Cappuccino (Capu) creates an actin mesh‐like structure that traverses the oocy...
The Drosophila formin Cappuccino (Capu) creates an actin mesh‐like structure that traverses the oocy...
The genes cappuccino (capu) and spire (spir) are required for establishment of the anterior/posterio...
Spire and Cappuccino are actin nucleation factors that are required to establish the polarity of Dro...
Cappuccino (Capu) is an actin assembly factor that is necessary to establish Drosophila oocyte polar...
During Drosophila development, the formin actin nucleator Cappuccino (Capu) helps build a cytoplasmi...
During Drosophila development, the formin actin nucleator Cappuccino (Capu) helps build a cytoplasmi...
cappuccino (capu) is a Drosophila melanogaster gene required for establishing the dorsal-ventral and...
International audienceCoordination between actin filaments and microtubules is critical to complete ...
SummaryMutants in the actin nucleators Cappuccino and Spire disrupt the polarized microtubule networ...
Coordination of actin and microtubule cytoskeletal networks is required for a number of fundamental ...
The Drosophila formin Cappuccino (Capu) creates an actin mesh-like structure that traverses the oocy...
Formin family actin nucleators are potential coordinators of the actin and microtubule cytoskeletons...
Two actin nucleators, Spire and Cappuccino, collaborate to build a network of actin filaments that c...
Two actin nucleators, Spire and Cappuccino, collaborate to build a network of actin filaments that c...
The Drosophila formin Cappuccino (Capu) creates an actin mesh‐like structure that traverses the oocy...
The Drosophila formin Cappuccino (Capu) creates an actin mesh‐like structure that traverses the oocy...
The genes cappuccino (capu) and spire (spir) are required for establishment of the anterior/posterio...
Spire and Cappuccino are actin nucleation factors that are required to establish the polarity of Dro...
Cappuccino (Capu) is an actin assembly factor that is necessary to establish Drosophila oocyte polar...
During Drosophila development, the formin actin nucleator Cappuccino (Capu) helps build a cytoplasmi...
During Drosophila development, the formin actin nucleator Cappuccino (Capu) helps build a cytoplasmi...
cappuccino (capu) is a Drosophila melanogaster gene required for establishing the dorsal-ventral and...
International audienceCoordination between actin filaments and microtubules is critical to complete ...