SummaryAxial muscles are innervated by motor neurons of the median motor column (MMC). In contrast to the segmentally restricted motor columns that innervate limb, body wall, and neuronal targets, MMC neurons are generated along the entire length of the spinal cord. We show that the specification of MMC fate involves a dorsoventral signaling program mediated by three Wnt proteins (Wnt4, Wnt5a, and Wnt5b) expressed in and around the floor plate. These Wnts appear to establish a ventralhigh to dorsallow signaling gradient and promote MMC identity and connectivity by maintaining expression of the LIM homeodomain proteins Lhx3/4 in spinal motor neurons. Elevation of Wnt4/5 activity generates additional MMC neurons at the expense of other motor ...
Summary: Control of movement relies on the ability of circuits within the spinal cord to establish c...
SummaryMovement coordination between opposite body sides relies on neuronal circuits capable of cont...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
SummaryAxial muscles are innervated by motor neurons of the median motor column (MMC). In contrast t...
Summary Axial muscles are innervated by motor neurons of the median motor column (MMC). In contrast ...
AbstractSensory axons from dorsal root ganglia neurons are guided to spinal targets by molecules dif...
SummaryThe formation of locomotor circuits depends on the spatially organized generation of motor co...
AbstractIn the developing spinal cord, motor neurons occupy discrete columns with different identiti...
SummaryMotor neurons, alone among neurons in the vertebrate CNS, extend axons out of the neural tube...
AbstractSubclasses of motor neurons are generated at different positions along the rostrocaudal axis...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
The anteroposterior axial identity of motor neurons (MNs) determines their functionality and vulnera...
SummaryThe fidelity with which spinal motor neurons innervate their limb target muscles helps to coo...
SummaryThe coordination of multi-muscle movements originates in the circuitry that regulates the fir...
A critical step in the assembly of the neural circuits that control tetrapod locomotion is the speci...
Summary: Control of movement relies on the ability of circuits within the spinal cord to establish c...
SummaryMovement coordination between opposite body sides relies on neuronal circuits capable of cont...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
SummaryAxial muscles are innervated by motor neurons of the median motor column (MMC). In contrast t...
Summary Axial muscles are innervated by motor neurons of the median motor column (MMC). In contrast ...
AbstractSensory axons from dorsal root ganglia neurons are guided to spinal targets by molecules dif...
SummaryThe formation of locomotor circuits depends on the spatially organized generation of motor co...
AbstractIn the developing spinal cord, motor neurons occupy discrete columns with different identiti...
SummaryMotor neurons, alone among neurons in the vertebrate CNS, extend axons out of the neural tube...
AbstractSubclasses of motor neurons are generated at different positions along the rostrocaudal axis...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
The anteroposterior axial identity of motor neurons (MNs) determines their functionality and vulnera...
SummaryThe fidelity with which spinal motor neurons innervate their limb target muscles helps to coo...
SummaryThe coordination of multi-muscle movements originates in the circuitry that regulates the fir...
A critical step in the assembly of the neural circuits that control tetrapod locomotion is the speci...
Summary: Control of movement relies on the ability of circuits within the spinal cord to establish c...
SummaryMovement coordination between opposite body sides relies on neuronal circuits capable of cont...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...