Control of semaphorin signaling
pmid: 12367632
Control of semaphorin signaling
Receptor complexes for the chemorepellent factors of the semaphorin family activate intracellular pathways that trigger actin rearrangements underlying growth cone collapse and repellent behavior. Some evidence has been provided for a complex and dynamic pattern of interaction between members of the small Rho guanosine triphosphatases and plexin proteins that are the receptor subunits responsible for initiating semaphorin signaling. The characterization of new components of semaphorin receptor complexes, the implication of several distinct classes of cytoplasmic effectors, together with the observation of a variety of processes modulating the semaphorin signal have provided a basis for a much improved, but still intricate view of the semaphorin transduction pathways in neurons.
Neurons, rho GTP-Binding Proteins, Growth Cones, Nerve Tissue Proteins, Semaphorins, Actins, Animals, Humans, Neuropilins, [SDV.BC] Life Sciences [q-bio]/Cellular Biology, Cell Adhesion Molecules, Signal Transduction
Neurons, rho GTP-Binding Proteins, Growth Cones, Nerve Tissue Proteins, Semaphorins, Actins, Animals, Humans, Neuropilins, [SDV.BC] Life Sciences [q-bio]/Cellular Biology, Cell Adhesion Molecules, Signal Transduction
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