Celsr3 is required in motor neurons to steer their axons in the
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Current Principles of Motor Control, with Special Reference to Vertebrate Locomotion
Feedback regulation of apical progenitor fate by immature neurons through Wnt7–Celsr3–Fzd3 signalling
Genetic evidence that Celsr3 and Celsr2, together with Fzd3, regulate forebrain wiring in a Vangl-independent manner
Celsr3 is required in motor neurons to steer their axons in the hindlimb - Document - Gale Academic OneFile
Neuromuscular Development
Regeneration of spinal motor axons: Negative regulation by Celsr2 implicating Cdc42/Rac1 and JNK/c-Jun signaling
Synergistic integration of Netrin and ephrin axon guidance signals by spinal motor neurons
Feedback regulation of apical progenitor fate by immature neurons through Wnt7–Celsr3–Fzd3 signalling
Celsr3 and Fzd3 in axon guidance.
Genetic evidence that Celsr3 and Celsr2, together with Fzd3, regulate forebrain wiring in a Vangl-independent manner
Celsr3 is required for Purkinje cell maturation and regulates cerebellar postsynaptic plasticity - ScienceDirect
Early reciprocal pioneer projections between ventral telencephalon and
Dystroglycan is a scaffold for extracellular axon guidance decisions
Celsr3 is required for Purkinje cell maturation and regulates cerebellar postsynaptic plasticity - ScienceDirect
PDF) Rac1 plays an essential role in axon growth and guidance and in neuronal survival in the central and peripheral nervous systems
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