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Drosophila Adult Olfactory Shock Learning
Published on: August 7, 2014
A dual role for the adaptor protein DRK in Drosophila olfactory learning and memory
Anastasios Moressis1, Anke R Friedrich, Elias Pavlopoulos
1Institute of Molecular Biology and Genetics, Biomedical Sciences Research Centre Alexander Fleming, Vari 16672, Greece.
Abstract:
Participation of RAS, RAF, and mitogen-activated protein kinase (MAPK) in learning and memory has been demonstrated in a number of studies, but the molecular events requisite for cascade activation and regulation have not been explored. We demonstrate that the adapter protein DRK (downstream of receptor kinase) which is essential for signaling to RAS in developmental contexts, is preferentially distributed in the adult mushroom bodies, centers for olfactory learning and memory. We demonstrate that drk mutant heterozygotes exhibit deficits in olfactory learning and memory, apparent under limited training conditions, but are not impaired in sensory responses requisite for the association of the stimuli, or brain neuroanatomy. Furthermore, we demonstrate that the protein is required acutely within mushroom body neurons to mediate efficient learning, a process that requires RAF activation. Importantly, 90 min memory remained impaired, even after differential training yielding equivalent learning in animals with compromised DRK levels and controls and did not require RAF. Sustained MAPK activation is compromised in drk mutants and surprisingly is negatively regulated by constitutive RAF activity. The data establish a role for DRK in Drosophila behavioral neuroplasticity and suggest a dual role for the protein, first in RAF activation-dependent learning and additionally in RAF-inhibition dependent sustained MAPK activation essential for memory formation or stability.
Insights
The adapter protein DRK is crucial for olfactory learning and memory in Drosophila. It plays a dual role in RAF activation-dependent learning and RAF inhibition-dependent sustained MAPK activation for memory stability.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- RAS, RAF, and MAPK pathways are implicated in learning and memory.
- Molecular mechanisms for cascade activation and regulation remain underexplored.
Purpose of the Study:
- To investigate the role of the adapter protein DRK in learning and memory.
- To elucidate the molecular events involving DRK in MAPK pathway activation and regulation.
Main Methods:
- Utilized Drosophila melanogaster as a model organism.
- Examined olfactory learning and memory in drk mutant heterozygotes.
- Assessed sensory responses, neuroanatomy, and MAPK activation.
Main Results:
- DRK is preferentially distributed in adult mushroom bodies, key learning and memory centers.
- drk mutant heterozygotes show deficits in olfactory learning and memory.
- DRK is acutely required in mushroom body neurons for learning, involving RAF activation.
- Sustained MAPK activation is compromised in drk mutants and negatively regulated by RAF activity.
Conclusions:
- DRK plays a significant role in Drosophila behavioral neuroplasticity.
- DRK exhibits a dual function: promoting RAF activation-dependent learning and RAF inhibition-dependent sustained MAPK activation for memory formation and stability.

