Disruptions in mushroom body (MB) or central complex (CC) brain structures impair Drosophila associative olfactory learning. Perturbations in adenosine 3',5' monophosphate signaling also disrupt learning. To integrate these observations, expression of a constitutively activated stimulatory heterotrimeric guanosine triphosphate-binding protein alpha subunit (Galphas*) was targeted to these brain structures. The ability to associate odors with electroshock was abolished when Galphas* was targeted to MB, but not CC, structures, whereas sensorimotor responses to these stimuli remained normal. Expression of Galphas* did not affect gross MB morphology, and wild-type Galphas expression did not affect learning. Thus, olfactory learning depends on r...
SummaryIn both mammals and insects, neurons involved in learning are strongly modulated by the inhib...
Summary: Odor-based learning and innate odor-driven behavior have been hypothesized to require separ...
Molecular and cellular studies have begun to unravel a neurobiological basis of olfactory processing...
Previously, disruptions of the cyclic adenosine monophosphate (cAMP) signalling pathway have been fo...
The corpora pedunculata, or mushroom bodies (MBs), in the brain of Drosophila melanogaster adults co...
Heterotrimeric G(o) is an abundant brain protein required for negatively reinforced short-term assoc...
The mushroom body (MB) brain area has been shown to be important for memory of courtship conditionin...
Most of our current knowledge of olfactory associative learning in Drosophila comes from the behavio...
By learning, through experience, which stimuli coincide with dangers, it is possible to predict outc...
GABAergic neurotransmitter systems are important for many cognitive processes, including learning an...
SummaryCyclic AMP signaling in Drosophila mushroom body neurons, anchored by the adenylyl cyclase en...
During olfactory associative learning in Drosophila, odors activate specific subsets of intrinsic mu...
Extensive molecular, genetic, and anatomical analyses have suggested that olfactory memory is stored...
SummaryThe loss of heterotrimeric G(o) signaling through the expression of pertussis toxin (PTX) wit...
The mushroom bodies, bilaterally symmetric regions in the insect brain, play a critical role in olfa...
SummaryIn both mammals and insects, neurons involved in learning are strongly modulated by the inhib...
Summary: Odor-based learning and innate odor-driven behavior have been hypothesized to require separ...
Molecular and cellular studies have begun to unravel a neurobiological basis of olfactory processing...
Previously, disruptions of the cyclic adenosine monophosphate (cAMP) signalling pathway have been fo...
The corpora pedunculata, or mushroom bodies (MBs), in the brain of Drosophila melanogaster adults co...
Heterotrimeric G(o) is an abundant brain protein required for negatively reinforced short-term assoc...
The mushroom body (MB) brain area has been shown to be important for memory of courtship conditionin...
Most of our current knowledge of olfactory associative learning in Drosophila comes from the behavio...
By learning, through experience, which stimuli coincide with dangers, it is possible to predict outc...
GABAergic neurotransmitter systems are important for many cognitive processes, including learning an...
SummaryCyclic AMP signaling in Drosophila mushroom body neurons, anchored by the adenylyl cyclase en...
During olfactory associative learning in Drosophila, odors activate specific subsets of intrinsic mu...
Extensive molecular, genetic, and anatomical analyses have suggested that olfactory memory is stored...
SummaryThe loss of heterotrimeric G(o) signaling through the expression of pertussis toxin (PTX) wit...
The mushroom bodies, bilaterally symmetric regions in the insect brain, play a critical role in olfa...
SummaryIn both mammals and insects, neurons involved in learning are strongly modulated by the inhib...
Summary: Odor-based learning and innate odor-driven behavior have been hypothesized to require separ...
Molecular and cellular studies have begun to unravel a neurobiological basis of olfactory processing...