AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spinal cord, but the signals that specify their fate remain poorly defined. We show that retinoid receptor activation in newly generated spinal motor neurons has a crucial role in specifying motor neuron columnar subtypes. Blockade of retinoid receptor signaling in brachial motor neurons inhibits lateral motor column differentiation and converts many of these neurons to thoracic columnar subtypes. Conversely, expression of a constitutively active retinoid receptor derivative impairs the differentiation of thoracic motor neuron columnar subtypes. These findings provide evidence for a regionally restricted role for retinoid signaling in the postmit...
AbstractThe specification of neuronal fates in the ventral spinal cord depends on the regulation of ...
AbstractThe development of neural subtypes in the dorsoventral (DV) axis of the vertebrate central n...
SummaryExtracellular signals and cell-intrinsic transcription factors cooperatively instruct generat...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
AbstractSubclasses of motor neurons are generated at different positions along the rostrocaudal axis...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
AbstractSubclasses of motor neurons are generated at different positions along the rostrocaudal axis...
Mind bomb (Mib) is an E3 ubiquitin ligase that activates the Notch signaling pathway. A previous stu...
AbstractThe specification of neuronal fates in the ventral spinal cord depends on the regulation of ...
AbstractThe development of neural subtypes in the dorsoventral (DV) axis of the vertebrate central n...
SummaryExtracellular signals and cell-intrinsic transcription factors cooperatively instruct generat...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
A major challenge in neurobiology is to understand mechanisms underlying human neuronal diversificat...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
AbstractSubclasses of motor neurons are generated at different positions along the rostrocaudal axis...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
AbstractSubclasses of motor neurons are generated at different positions along the rostrocaudal axis...
Mind bomb (Mib) is an E3 ubiquitin ligase that activates the Notch signaling pathway. A previous stu...
AbstractThe specification of neuronal fates in the ventral spinal cord depends on the regulation of ...
AbstractThe development of neural subtypes in the dorsoventral (DV) axis of the vertebrate central n...
SummaryExtracellular signals and cell-intrinsic transcription factors cooperatively instruct generat...