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Robinson, Holly; Pozzo-Miller, Lucas – Learning & Memory, 2019
Gene transcription is a crucial step in the sequence of molecular, synaptic, cellular, and systems mechanisms underlying learning and memory. Here, we review the experimental evidence demonstrating that alterations in the levels and functionality of the methylated DNA-binding transcriptional regulator MeCP2 are implicated in the learning and…
Descriptors: Genetics, Learning, Memory, Animals
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Schultz, Maria N.; Crawley, Jacqueline N. – Learning & Memory, 2020
Angelman syndrome is a rare neurodevelopmental disorder caused by a mutation in the maternal allele of the gene "Ube3a." The primary symptoms of Angelman syndrome are severe cognitive deficits, impaired motor functions, and speech disabilities. Analogous phenotypes have been detected in young adult "Ube3a" mice. Here, we…
Descriptors: Neurological Impairments, Genetics, Genetic Disorders, Symptoms (Individual Disorders)
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Fry, Benjamin R.; Pence, Nathan T.; McLocklin, Andrew; Johnson, Alexander W. – Learning & Memory, 2021
The dopamine system has been implicated in decision-making particularly when associated with effortful behavior. We examined acute optogenetic stimulation of dopamine cells in the ventral tegmental area (VTA) as mice engaged in an effort-based decision-making task. Tyrosine hydroxylase-Cre mice were injected with Cre-dependent ChR2 or eYFP control…
Descriptors: Decision Making, Brain, Cognitive Processes, Stimulation
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Nartey, Michaelina N.; Peña-Castillo, Lourdes; LeGrow, Megan; Doré, Jules; Bhattacharya, Sriya; Darby-King, Andrea; Carew, Samantha J.; Yuan, Qi; Harley, Carolyn W.; McLean, John H. – Learning & Memory, 2020
In the olfactory bulb, a cAMP/PKA/CREB-dependent form of learning occurs in the first week of life that provides a unique mammalian model for defining the epigenetic role of this evolutionarily ancient plasticity cascade. Odor preference learning in the week-old rat pup is rapidly induced by a 10-min pairing of odor and stroking. Memory is…
Descriptors: Animals, Genetics, Learning, Olfactory Perception
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Martin, Kiley; Musaus, Madeline; Navabpour, Shaghayegh; Gustin, Aspen; Ray, W. Keith; Helm, Richard F.; Jarome, Timothy J. – Learning & Memory, 2021
Strong evidence supports a role for protein degradation in fear memory formation. However, these data have been largely done in only male animals. Here, we found that following contextual fear conditioning, females, but not males, had increased levels of proteasome activity and K48 polyubiquitin protein targeting in the dorsal hippocampus, the…
Descriptors: Fear, Memory, Gender Differences, Animals
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Stevanovic, Korey D.; Fry, Sydney A.; DeFilipp, Jemma M. S.; Wu, Nicholas; Bernstein, Briana J.; Cushman, Jesse D. – Learning & Memory, 2022
Inclusion of male and female subjects in behavioral neuroscience research requires a concerted effort to characterize sex differences in standardized behavioral assays. Sex differences in hippocampus-dependent assays have been widely reported but are still poorly characterized. In the present study, we conducted a parametric analysis of…
Descriptors: Sex, Gender Differences, Brain Hemisphere Functions, Genetics
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Butler, Anderson A.; Sanchez, Richard G.; Jarome, Timothy J.; Webb, William M.; Lubin, Farah D. – Learning & Memory, 2019
O-GlcNAcylation of serine/threonine residues on target proteins occurs dynamically in postmitotic neurons of the hippocampus and may serve to control both the stability and activity of target proteins. Remarkably, the addition and removal of the O-GlcNAc posttranslational modifications are catalyzed by a pair of enzymes, the O-GlcNAc transferase…
Descriptors: Genetics, Fear, Memory, Brain
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Sathiyakumar, Sankirthana; Carrasco, Sofia Skromne; Saad, Lydia; Richards, Blake A. – Learning & Memory, 2020
Behavioral flexibility is important in a changing environment. Previous research suggests that systems consolidation, a long-term poststorage process that alters memory traces, may reduce behavioral flexibility. However, exactly how systems consolidation affects flexibility is unknown. Here, we tested how systems consolidation affects: (1)…
Descriptors: Memory, Animals, Rewards, Food
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Hegde, Ashok N.; Smith, Spencer G. – Learning & Memory, 2019
Formation of long-term synaptic plasticity that underlies long-term memory requires new protein synthesis. Years of research has elucidated some of the transcriptional and translational mechanisms that contribute to the production of new proteins. Early research on transcription focused on the transcription factor cAMP-responsive element binding…
Descriptors: Memory, Brain Hemisphere Functions, Biochemistry, Molecular Structure
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Torres, Eileen Ruth S.; Boutros, Sydney Weber; Meshul, Charles K.; Raber, Jacob – Learning & Memory, 2020
Parkinson's disease (PD) is characterized clinically by progressive motor dysfunction; overt parkinsonism is often preceded by prodromal symptoms including disturbances in the sleep-wake cycle. Up to 80% of patients with PD also develop dementia. In humans, there are three major apolipoprotein E isoforms: E2, E3, and E4. Increased rate of dementia…
Descriptors: Neurological Impairments, Dementia, Genetics, Animals
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Baggett, Vincent; Mishra, Aditi; Kehrer, Abigail L.; Robinson, Abbey O.; Shaw, Paul; Zars, Troy – Learning & Memory, 2018
Animals in a natural environment confront many sensory cues. Some of these cues bias behavioral decisions independent of experience, and action selection can reveal a stimulus-response (S-R) connection. However, in a changing environment it would be a benefit for an animal to update behavioral action selection based on experience, and learning…
Descriptors: Cues, Stimuli, Animal Behavior, Entomology
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Duke, Corey G.; Kennedy, Andrew J.; Gavin, Cristin F.; Day, Jeremy J.; Sweatt, J. David – Learning & Memory, 2017
Using a hippocampus-dependent contextual threat learning and memory task, we report widespread, coordinated DNA methylation changes in CA1 hippocampus of Sprague-Dawley rats specific to threat learning at genes involved in synaptic transmission. Experience-dependent alternations in gene expression and DNA methylation were observed as early as 1 h…
Descriptors: Genetics, Animals, Memory, Brain
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Heuer, Sarah E.; Neuner, Sarah M.; Hadad, Niran; O'Connell, Kristen M. S.; Williams, Robert W.; Philip, Vivek M.; Gaiteri, Chris; Kaczorowski, Catherine C. – Learning & Memory, 2020
Individual differences in cognitive decline during normal aging and Alzheimer's disease (AD) are common, but the molecular mechanisms underlying these distinct outcomes are not fully understood. We utilized a combination of genetic, molecular, and behavioral data from a mouse population designed to model human variation in cognitive outcomes to…
Descriptors: Cognitive Processes, Resilience (Psychology), Alzheimers Disease, Genetics
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Shu, Guanhua; Kramár, Enikö A.; López, Alberto J.; Huynh, Grace; Wood, Marcelo A.; Kwapis, Janine L. – Learning & Memory, 2018
Multiple epigenetic mechanisms, including histone acetylation and nucleosome remodeling, are known to be involved in long-term memory formation. Enhancing histone acetylation by deleting histone deacetylases, like HDAC3, typically enhances long-term memory formation. In contrast, disrupting nucleosome remodeling by blocking the neuron-specific…
Descriptors: Long Term Memory, Genetics, Molecular Structure, Neurological Impairments
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Yang, Qizong; Antonov, Igor; Castillejos, David; Nagaraj, Anagha; Bostwick, Caleb; Kohn, Andrea; Moroz, Leonid; Hawkins, Robert D. – Learning & Memory, 2018
Long-term but not short-term memory and synaptic plasticity in many brain areas require neurotrophin signaling, transcription, and epigenetic mechanisms including DNA methylation. However, it has been difficult to relate these cellular mechanisms directly to behavior because of the immense complexity of the mammalian brain. To address that…
Descriptors: Memory, Animals, Genetics, Brain
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