AbstractBackground: Memory formation after olfactory learning in Drosophila displays behavioral and molecular properties similar to those of other species. Particularly, long-term memory requires CREB-dependent transcription, suggesting the regulation of “downstream” genes. At the cellular level, long-lasting synaptic plasticity in many species also appears to depend on CREB-mediated gene transcription and subsequent structural and functional modification of relevant synapses. To date, little is known about the molecular-genetic mechanisms that contribute to this process during memory formation.Results: We used two complementary strategies to identify these genes. From DNA microarrays, we identified 42 candidate memory genes that appear to ...
Studies of memory have identified several memory classifications: declarative, implicit, working, an...
The ability to integrate experiential information and recall it in the form of memory is observed in...
A central goal of neuroscience is to understand how neural circuits encode memory and guide behavior...
AbstractBackground: Memory formation after olfactory learning in Drosophila displays behavioral and ...
Background: Memory formation after olfactory learning in Drosophila displays behavioral and molecula...
Memory formation is achieved by genetically tightly controlled molecular pathways that result in a ...
AbstractGenetic, behavioral and electrophysiological approaches are beginning to unravel the mechani...
One of the hallmarks of both memory and the underlying synaptic plasticity is that they each rely on...
Memory formation is achieved by genetically tightly controlled molecular pathways that result in a c...
AbstractA new study of olfactory memory formation in Drosophila shows that a delicate balance of CRE...
Drosophila Pumilio (Pum) protein is a translational regulator involved in embryonic patterning and g...
Genetic screens for Drosophila mutants defective in pavlovian olfactory memory have provided unique ...
Long-term memory (LTM) requires gene transcription. However, there is still much to learn about whic...
AbstractThe linotte (lio) gene was identified in a screen for mutations that disrupted 3 hr memory a...
Molecular and genetic analysis of synaptic signaling in Drosophila has yielded many insights into ne...
Studies of memory have identified several memory classifications: declarative, implicit, working, an...
The ability to integrate experiential information and recall it in the form of memory is observed in...
A central goal of neuroscience is to understand how neural circuits encode memory and guide behavior...
AbstractBackground: Memory formation after olfactory learning in Drosophila displays behavioral and ...
Background: Memory formation after olfactory learning in Drosophila displays behavioral and molecula...
Memory formation is achieved by genetically tightly controlled molecular pathways that result in a ...
AbstractGenetic, behavioral and electrophysiological approaches are beginning to unravel the mechani...
One of the hallmarks of both memory and the underlying synaptic plasticity is that they each rely on...
Memory formation is achieved by genetically tightly controlled molecular pathways that result in a c...
AbstractA new study of olfactory memory formation in Drosophila shows that a delicate balance of CRE...
Drosophila Pumilio (Pum) protein is a translational regulator involved in embryonic patterning and g...
Genetic screens for Drosophila mutants defective in pavlovian olfactory memory have provided unique ...
Long-term memory (LTM) requires gene transcription. However, there is still much to learn about whic...
AbstractThe linotte (lio) gene was identified in a screen for mutations that disrupted 3 hr memory a...
Molecular and genetic analysis of synaptic signaling in Drosophila has yielded many insights into ne...
Studies of memory have identified several memory classifications: declarative, implicit, working, an...
The ability to integrate experiential information and recall it in the form of memory is observed in...
A central goal of neuroscience is to understand how neural circuits encode memory and guide behavior...