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Lyons, Lisa C.; Gardner, Jacob S.; Gandour, Catherine E.; Krishnan, Harini C. – Learning & Memory, 2017
We investigated the in vivo role of protein degradation during intermediate (ITM) and long-term memory (LTM) in "Aplysia" using an operant learning paradigm. The proteasome inhibitor MG-132 inhibited the induction and molecular consolidation of LTM with no effect on ITM. Remarkably, maintenance of steady-state protein levels through…
Descriptors: Memory, Biochemistry, Brain Hemisphere Functions, Role
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Briggs, Sherri B.; Hafenbreidel, Madalyn; Young, Erica J.; Rumbaugh, Gavin; Miller, Courtney A. – Learning & Memory, 2018
Using pharmacologic and genetic approaches targeting actin or the actin-driving molecular motor, nonmuscle myosin II (NMII), we previously discovered an immediate, retrieval-independent, and long-lasting disruption of methamphetamine- (METH-) and amphetamine-associated memories. A single intrabasolateral amygdala complex infusion or systemic…
Descriptors: Role, Memory, Genetics, Drug Therapy
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Levitan, David; Saada-Madar, Ravit; Teplinsky, Anastasiya; Susswein, Abraham J. – Learning & Memory, 2012
Training paradigms affecting "Aplysia" withdrawal reflexes cause changes in gene expression leading to long-term memory formation in primary mechanoafferents that initiate withdrawal. Similar mechanoafferents are also found in the buccal ganglia that control feeding behavior, raising the possibility that these mechanoafferents are a locus of…
Descriptors: Genetics, Long Term Memory, Brain Hemisphere Functions, Molecular Structure
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Barrett, Ruth M.; Wood, Marcelo A. – Learning & Memory, 2008
One of the alluring aspects of examining chromatin modifications in the role of modulating transcription required for long-term memory processes is that these modifications may provide transient and potentially stable epigenetic marks in the service of activating and/or maintaining transcriptional processes. These, in turn, may ultimately…
Descriptors: Drug Addiction, Genetics, Long Term Memory, Depression (Psychology)
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Oliveira, Ana M. M.; Wood, Marcelo A.; McDonough, Conor B.; Abel, Ted – Learning & Memory, 2007
The formation of many forms of long-term memory requires several molecular mechanisms including regulation of gene expression. The mechanisms directing transcription require not only activation of individual transcription factors but also recruitment of transcriptional coactivators. CBP and p300 are transcriptional coactivators that interact with…
Descriptors: Recognition (Psychology), Biochemistry, Long Term Memory, Animals