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Creighton, Samantha D.; Jardine, Kristen H.; Desimone, Alexa; Zmetana, Megan; Castellano, Sabrina; Milite, Ciro; Sbardella, Gianluca; Winters, Boyer D. – Learning & Memory, 2022
Histone acetylation, catalyzed by e, has emerged as a promising therapeutic strategy in Alzheimer's disease (AD). By longitudinally characterizing spatial memory at 3, 6, and 9 mo of age, we show that acute activation and inhibition of the histone acetyltransferase PCAF remediated memory impairments in 3xTG-AD mice in an age-related bidirectional…
Descriptors: Alzheimers Disease, Animals, Research, Spatial Ability
Oberländer, Kristin; Witte, Victoria; Mallien, Anne Stephanie; Gass, Peter; Bengtson, C. Peter; Bading, Hilmar – Learning & Memory, 2022
Differences in the learning associated transcriptional profiles between mouse strains with distinct learning abilities could provide insight into the molecular basis of learning and memory. The inbred mouse strain DBA/2 shows deficits in hippocampus-dependent memory, yet the transcriptional responses to learning and the underlying mechanisms of…
Descriptors: Learning, Memory, Animals, Research
Stern, Sarah A.; Chen, Dillon Y.; Alberini, Cristina M. – Learning & Memory, 2014
Recent work has reported that the insulin-like growth factor 2 (IGF2) promotes memory enhancement. Furthermore, impaired insulin or IGF1 functions have been suggested to play a role in the pathogenesis of neurodegeneration and cognitive impairments, hence implicating the insulin/IGF system as an important target for cognitive enhancement and/or…
Descriptors: Memory, Drug Use, Neurological Impairments, Cognitive Development
Kim, Seonil; Pick, Joseph E.; Abera, Sinedu; Khatri, Latika; Ferreira, Danielle D. P.; Sathler, Matheus F.; Morison, Sage L.; Hofmann, Franz; Ziff, Edward B. – Learning & Memory, 2016
Phosphorylation of GluA1, a subunit of AMPA receptors (AMPARs), is critical for AMPAR synaptic trafficking and control of synaptic transmission. cGMP-dependent protein kinase II (cGKII) mediates this phosphorylation, and cGKII knockout (KO) affects GluA1 phosphorylation and alters animal behavior. Notably, GluA1 phosphorylation in the KO…
Descriptors: Animals, Animal Behavior, Research, Memory
Bausch, Anne E.; Dieter, Rebekka; Nann, Yvette; Hausmann, Mario; Meyerdierks, Nora; Kaczmarek, Leonard K.; Ruth, Peter; Lukowski, Robert – Learning & Memory, 2015
"Kcnt1" encoded sodium-activated potassium channels (Slack channels) are highly expressed throughout the brain where they modulate the firing patterns and general excitability of many types of neurons. Increasing evidence suggests that Slack channels may be important for higher brain functions such as cognition and normal intellectual…
Descriptors: Animals, Research, Cognitive Ability, Neurological Organization
Liu, Yan; Sun, Jiandong; Wang, Yubin; Lopez, Dulce; Tran, Jennifer; Bi, Xiaoning; Baudry, Michel – Learning & Memory, 2016
Calpain-1 (CANP1) has been shown to play a critical role in synaptic plasticity and learning and memory, as its deletion in mice results in impairment in theta-burst stimulation (TBS)-induced LTP and various forms of learning and memory. Likewise, PHLPP1 (aka SCOP) has also been found to participate in learning and memory, as PHLPP1 overexpression…
Descriptors: Animals, Brain Hemisphere Functions, Research, Memory
Inhibition of Glycogen Synthase Kinase-3ß Enhances Cognitive Recovery after Stroke: The Role of TAK1
Venna, Venugopal Reddy; Benashski, Sharon E.; Chauhan, Anjali; McCullough, Louise D. – Learning & Memory, 2015
Memory deficits are common among stroke survivors. Identifying neuroprotective agents that can prevent memory impairment or improve memory recovery is a vital area of research. Glycogen synthase kinase-3ß (GSK-3ß) is involved in several essential intracellular signaling pathways. Unlike many other kinases, GSK-3ß is active only when…
Descriptors: Memory, Neurological Impairments, Brain, Neurological Organization
Jalil, Sajiya J.; Sacktor, Todd Charlton; Shouval, Harel Z. – Learning & Memory, 2015
Memories that last a lifetime are thought to be stored, at least in part, as persistent enhancement of the strength of particular synapses. The synaptic mechanism of these persistent changes, late long-term potentiation (L-LTP), depends on the state and number of specific synaptic proteins. Synaptic proteins, however, have limited dwell times due…
Descriptors: Long Term Memory, Brain Hemisphere Functions, Neurological Organization, Maintenance
Spiegel, Amy M.; Sewal, Angila S.; Rapp, Peter R. – Learning & Memory, 2014
Epigenetic modifications of chromatin structure provide a mechanistic interface for gene-environment interactions that impact the individualization of health trajectories across the lifespan. A growing body of research indicates that dysfunctional epigenetic regulation contributes to poor cognitive outcomes among aged populations. Here we review…
Descriptors: Aging (Individuals), Genetics, Environmental Influences, Interaction
Daumas, Stephanie; Sandin, Johan; Chen, Karen S.; Kobayashi, Dione; Tulloch, Jane; Martin, Stephen J.; Games, Dora; Morris, Richard G. M. – Learning & Memory, 2008
Two experiments were conducted to investigate the possibility of faster forgetting by PDAPP mice (a well-established model of Alzheimer's disease as reported by Games and colleagues in an earlier paper). Experiment 1, using mice aged 13-16 mo, confirmed the presence of a deficit in a spatial reference memory task in the water maze by hemizygous…
Descriptors: Animals, Alzheimers Disease, Cognitive Processes, Neurological Impairments
Ris, Laurence; Godaux, Emile – Learning & Memory, 2007
Memory shows age-related decline. According to the current prevailing theoretical model, encoding of memories relies on modifications in the strength of the synapses connecting the different cells within a neuronal network. The selective increases in synaptic weight are thought to be biologically implemented by long-term potentiation (LTP). Here,…
Descriptors: Memory, Brain, Aging (Individuals), Animals
Witter, Menno P. – Learning & Memory, 2007
Within the framework of a special issue on CA3, it was deemed relevant to summarize what is known about the extrinsic and intrinsic wiring of CA3 as a basis for other contributions. Here, I have aimed to update already existing excellent reviews on the subject and to raise the issue whether or not the known architecture of the field supports the…
Descriptors: Recall (Psychology), Memory, Neurological Organization, Brain