SummaryActin regulators facilitate cell migration by controlling cell protrusion architecture and dynamics. As the behavior of individual actin regulators becomes clear, we must address why cells require multiple regulators with similar functions and how they cooperate to create diverse protrusions. We characterized Diaphanous (Dia) and Enabled (Ena) as a model, using complementary approaches: cell culture, biophysical analysis, and Drosophila morphogenesis. We found that Dia and Ena have distinct biochemical properties that contribute to the different protrusion morphologies each induces. Dia is a more processive, faster elongator, paralleling the long, stable filopodia it induces in vivo, while Ena promotes filopodia with more dynamic cha...
The rearrangement of cytoskeletal elements is essential for many cellular processes. The tumor suppr...
Cell migration is essential for embryonic development, it occurs in adult organisms during processes...
SummaryEna/VASP proteins and the WAVE regulatory complex (WRC) regulate cell motility by virtue of t...
Actin regulators facilitate cell migration by controlling cell protrusion architecture and dynamics....
Actin regulators facilitate cell migration by controlling cell protrusion architecture and dynamics....
SummaryActin regulators facilitate cell migration by controlling cell protrusion architecture and dy...
During migration cell protrusions power cell extension and sample the environment. Different cells p...
Studies in cultured cells and in vitro have identified many actin regulators and begun to define the...
Actin-based protrusions are important for signaling and migration during development and homeostasis...
ABSTRACT Actin-based protrusions are important for signaling and migration during devel-opment and h...
During development, cells craft an impressive array of actin-based structures, mediating events as d...
AbstractDuring development, cells craft an impressive array of actin-based structures, mediating eve...
Formins are key regulators of actin nucleation and elongation. Diaphanous-related formins, the best-...
DIAPH1 (mDia1) is involved in both Rho-mediated actin polymerization and microtubule assembly and st...
Organs develop distinctive morphologies to fulfill their unique functions. We used Drosophila embryo...
The rearrangement of cytoskeletal elements is essential for many cellular processes. The tumor suppr...
Cell migration is essential for embryonic development, it occurs in adult organisms during processes...
SummaryEna/VASP proteins and the WAVE regulatory complex (WRC) regulate cell motility by virtue of t...
Actin regulators facilitate cell migration by controlling cell protrusion architecture and dynamics....
Actin regulators facilitate cell migration by controlling cell protrusion architecture and dynamics....
SummaryActin regulators facilitate cell migration by controlling cell protrusion architecture and dy...
During migration cell protrusions power cell extension and sample the environment. Different cells p...
Studies in cultured cells and in vitro have identified many actin regulators and begun to define the...
Actin-based protrusions are important for signaling and migration during development and homeostasis...
ABSTRACT Actin-based protrusions are important for signaling and migration during devel-opment and h...
During development, cells craft an impressive array of actin-based structures, mediating events as d...
AbstractDuring development, cells craft an impressive array of actin-based structures, mediating eve...
Formins are key regulators of actin nucleation and elongation. Diaphanous-related formins, the best-...
DIAPH1 (mDia1) is involved in both Rho-mediated actin polymerization and microtubule assembly and st...
Organs develop distinctive morphologies to fulfill their unique functions. We used Drosophila embryo...
The rearrangement of cytoskeletal elements is essential for many cellular processes. The tumor suppr...
Cell migration is essential for embryonic development, it occurs in adult organisms during processes...
SummaryEna/VASP proteins and the WAVE regulatory complex (WRC) regulate cell motility by virtue of t...