During development, neural competence is conferred and maintained by integrating spatial and temporal regulations. The Drosophila sensory bristles that detect mechanical and chemical stimulations are arranged in stereotypical positions. The anterior wing margin (AWM) is arrayed with neuron-innervated sensory bristles, while posterior wing margin (PWM) bristles are non-innervated. We found that the COP9 signalosome (CSN) suppresses the neural competence of non-innervated bristles at the PWM. In CSN mutants, PWM bristles are transformed into neuron-innervated, which is attributed to sustained expression of the neural-determining factor Senseless (Sens). The CSN suppresses Sens through repression of the ecdysone signaling target gene broad (br...
<div><p>The bristle sensillum of the imago of <i>Drosophila</i> is made of four cells that arise fro...
International audienceNotch signalling regulates a wide range of developmental processes. In the Dro...
The bristle sensillum of the imago of Drosophila is made of four cells that arise from a sensory org...
Altered dendritic arborization contributes to numerous physiological processes including synaptic pl...
Altered dendritic arborization contributes to numerous physiological processes including synaptic pl...
Components of the COP9 signalosome (CSN), a key member of the conserved 26S proteasome degradation p...
Developmental pruning of axons and dendrites is crucial for the formation of precise neuronal connec...
AbstractAn important role in olfactory system development is played by transcription factors which a...
Sensory neurons enable animals to detect environmental changes and avoid harm. An intriguing open qu...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
AbstractThe senseless (sens) gene is required for proper development of most cell types of the embry...
AbstractSensory neurons enable animals to detect environmental changes and avoid harm. An intriguing...
SummaryTopographic projection of afferent terminals into 2D maps in the CNS is a general strategy us...
Topographic projection of afferent terminals into 2D maps in the CNS is a general strategy used by t...
<div><p>Notch signalling regulates a wide range of developmental processes. In the <i>Drosophila</i>...
<div><p>The bristle sensillum of the imago of <i>Drosophila</i> is made of four cells that arise fro...
International audienceNotch signalling regulates a wide range of developmental processes. In the Dro...
The bristle sensillum of the imago of Drosophila is made of four cells that arise from a sensory org...
Altered dendritic arborization contributes to numerous physiological processes including synaptic pl...
Altered dendritic arborization contributes to numerous physiological processes including synaptic pl...
Components of the COP9 signalosome (CSN), a key member of the conserved 26S proteasome degradation p...
Developmental pruning of axons and dendrites is crucial for the formation of precise neuronal connec...
AbstractAn important role in olfactory system development is played by transcription factors which a...
Sensory neurons enable animals to detect environmental changes and avoid harm. An intriguing open qu...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
AbstractThe senseless (sens) gene is required for proper development of most cell types of the embry...
AbstractSensory neurons enable animals to detect environmental changes and avoid harm. An intriguing...
SummaryTopographic projection of afferent terminals into 2D maps in the CNS is a general strategy us...
Topographic projection of afferent terminals into 2D maps in the CNS is a general strategy used by t...
<div><p>Notch signalling regulates a wide range of developmental processes. In the <i>Drosophila</i>...
<div><p>The bristle sensillum of the imago of <i>Drosophila</i> is made of four cells that arise fro...
International audienceNotch signalling regulates a wide range of developmental processes. In the Dro...
The bristle sensillum of the imago of Drosophila is made of four cells that arise from a sensory org...