AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends on inductive signals provided by local organizing cell groups of both neural and nonneural origin. The influence of signals provided by postmitotic neurons on the fate of neurons born at subsequent development stages, however, remains unclear. We provide evidence that a retinoid-mediated signal provided by one subset of early-born spinal motor neurons imposes a local variation in the number of motor neurons generated at different axial levels and also specifies the identity of a later-born subset of motor neurons. Thus, in the vertebrate central nervous system the distinct fates of late-born neurons may be acquired in response to signals prov...
Mind bomb (Mib) is an E3 ubiquitin ligase that activates the Notch signaling pathway. A previous stu...
AbstractLearning how the incredible diversity of neurons in the vertebrate central nervous system (C...
The vertebrate nervous system performs the most complex functions of any organ system. This feat is ...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
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...
Motor neurons are probably the best characterised neuronal class in the vertebrate central nervous s...
The link between extrinsic signaling, progenitor cell specification and neuronal subtype identity is...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
SummaryCell diversity and organization in the neural tube depend on the integration of extrinsic sig...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
Mind bomb (Mib) is an E3 ubiquitin ligase that activates the Notch signaling pathway. A previous stu...
AbstractLearning how the incredible diversity of neurons in the vertebrate central nervous system (C...
The vertebrate nervous system performs the most complex functions of any organ system. This feat is ...
AbstractThe diversification of neuronal cell types in the vertebrate central nervous system depends ...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
AbstractThe identity of motor neurons diverges markedly at different rostrocaudal levels of the spin...
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...
Motor neurons are probably the best characterised neuronal class in the vertebrate central nervous s...
The link between extrinsic signaling, progenitor cell specification and neuronal subtype identity is...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
SummaryCell diversity and organization in the neural tube depend on the integration of extrinsic sig...
Retinoic acid signaling is required at several steps during the development of the spinal cord, fro...
Mind bomb (Mib) is an E3 ubiquitin ligase that activates the Notch signaling pathway. A previous stu...
AbstractLearning how the incredible diversity of neurons in the vertebrate central nervous system (C...
The vertebrate nervous system performs the most complex functions of any organ system. This feat is ...