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Sahoo, Biswaranjan; Sharma, Shiv K. – Learning & Memory, 2022
A critical role of protein modifications such as phosphorylation and acetylation in synaptic plasticity and memory is well documented. Tyrosine sulfation plays important roles in several biological processes. However, its role in synaptic plasticity and memory is not well understood. Here, we show that sulfation contributes to long-term…
Descriptors: Long Term Memory, Biochemistry, Brain Hemisphere Functions, Spatial Ability
Ostroff, Linnaea E.; Cain, Christopher K. – Learning & Memory, 2022
Local protein synthesis at synapses can provide a rapid supply of proteins to support synaptic changes during consolidation of new memories, but its role in the maintenance or updating of established memories is unknown. Consolidation requires new protein synthesis in the period immediately following learning, whereas established memories are…
Descriptors: Long Term Memory, Associative Learning, Brain, Cognitive Processes
Colettis, Natalia Claudia; Habif, Martín; Oberholzer, María Victoria; Filippin, Federico; Jerusalinsky, Diana Alicia – Learning & Memory, 2022
We observed differences in cognitive functions between middle-aged female and male Wistar rats. Both (like youngsters) discriminated new versus familiar objects, showing similar short- and long-term memory (STM and LTM, respectively). Only females show robust LTM for new location of an object. Both successfully form LTM of inhibitory avoidance,…
Descriptors: Gender Differences, Adults, Animals, Cognitive Processes
Bisaz, Reto; Bessières, Benjamin; Miranda, Janelle M.; Travaglia, Alessio; Alberini, Cristina M. – Learning & Memory, 2021
Episodic memories formed during infancy are rapidly forgotten, a phenomenon associated with infantile amnesia, the inability of adults to recall early-life memories. In both rats and mice, infantile memories, although not expressed, are actually stored long term in a latent form. These latent memories can be reinstated later in life by certain…
Descriptors: Recall (Psychology), Infants, Long Term Memory, Adults
Manga, Annamária; Madurka, Petra; Vakli, Pál; Kirwan, C. Brock; Vidnyánszky, Zoltán – Learning & Memory, 2021
Binding visual features into coherent object representations is essential both in short- and long-term memory. However, the relationship between feature binding processes at different memory delays remains unexplored. Here, we addressed this question by using the Mnemonic Similarity Task and a delayed-estimation working memory task on a large…
Descriptors: Long Term Memory, Short Term Memory, Mnemonics, Older Adults
Barker, Gareth Robert; Wong, Liang Fong; Uney, James B.; Warburton, Elizabeth C. – Learning & Memory, 2020
The medial prefrontal cortex (mPFC) is known to be critical for specific forms of long-term recognition memory, however the cellular mechanisms in the mPFC that underpin memory maintenance have not been well characterized. This study examined the importance of phosphorylation of cAMP responsive element binding protein (CREB) in the mPFC for…
Descriptors: Brain Hemisphere Functions, Long Term Memory, Recognition (Psychology), Spatial Ability
Park, Hyungju; Kaang, Bong-Kiun – Learning & Memory, 2019
Storage of long-term memory requires not only protein synthesis but also protein degradation. In this article, we overview recent publications related to this issue, stressing that the balanced actions of protein synthesis and degradation are critical for long-term memory formation. We particularly focused on the brain-derived neurotrophic factor…
Descriptors: Long Term Memory, Biochemistry, Brain, Cognitive Processes
Arkell, Daisy; Groves, Isabelle; Wood, Emma R.; Hardt, Oliver – Learning & Memory, 2021
Reducing sensory experiences during the period that immediately follows learning improves long-term memory retention in healthy humans, and even preserves memory in patients with amnesia. To date, it is entirely unclear why this is the case, and identifying the neurobiological mechanisms underpinning this effect requires suitable animal models,…
Descriptors: Sensory Experience, Long Term Memory, Learning, Neurological Organization
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
Perez, Leticia; Patel, Ushma; Rivota, Marissa; Calin-Jageman, Irina E.; Calin-Jageman, Robert J. – Learning & Memory, 2018
Most long-term memories are forgotten. What happens, then, to the changes in neuronal gene expression that were initially required to encode and maintain the memory? Here we show that the decay of recall for long-term sensitization memory in "Aplysia" is accompanied both by a form of savings memory (easier relearning) and by persistent…
Descriptors: Long Term Memory, Genetics, Recall (Psychology), Animals
Sanders, Erin M.; Nyarko-Odoom, Akua O.; Zhao, Kevin; Nguyen, Michael; Liao, Hong Hong Liao; Keith, Matthew; Pyon, Jane; Kozma, Alyssa; Sanyal, Mohima; McHail, Daniel G.; Dumas, Theodore C. – Learning & Memory, 2018
N-methyl-D-aspartate receptors (NMDARs) at excitatory synapses are central to activity-dependent synaptic plasticity and learning and memory. NMDARs act as ionotropic and metabotropic receptors by elevating postsynaptic calcium concentrations and by direct intracellular protein signaling. In the forebrain, these properties are controlled largely…
Descriptors: Learning, Long Term Memory, Statistical Analysis, Spatial Ability
Shobe, Justin; Philips, Gary T.; Carew, Thomas J. – Learning & Memory, 2016
In this study, we explore the mechanistic relationship between growth factor signaling and kinase activity that supports the protein synthesis-dependent phase of long-term memory (LTM) consolidation for sensitization of "Aplysia." Specifically, we examine LTM for tail shock-induced sensitization of the tail-elicited siphon withdrawal…
Descriptors: Long Term Memory, Biochemistry, Animals
Liu, Rong-Yu; Neveu, Curtis; Smolen, Paul; Cleary, Leonard J.; Byrne, John H. – Learning & Memory, 2017
Developing treatment strategies to enhance memory is an important goal of neuroscience research. Activation of multiple biochemical signaling cascades, such as the protein kinase A (PKA) and extracellular signal-regulated kinase (ERK) pathways, is necessary to induce long-term synaptic facilitation (LTF), a correlate of long-term memory (LTM).…
Descriptors: Drug Therapy, Biochemistry, Pharmacology, Intervention
Briskin-Luchinsky, Valeria; Levy, Roi; Halfon, Maayan; Susswein, Abraham J. – Learning & Memory, 2018
Training "Aplysia" with inedible food for a period that is too brief to produce long-term memory becomes effective in producing memory when training is paired with a nitric oxide (NO) donor. Lip stimulation for the same period of time paired with an NO donor is ineffective. Using qPCR, we examined molecular correlates of brief training…
Descriptors: Animals, Training, Food, Long Term Memory
Lotfipour, Shahrdad; Mojica, Celina; Nakauchi, Sakura; Lipovsek, Marcela; Silverstein, Sarah; Cushman, Jesse; Tirtorahardjo, James; Poulos, Andrew; Elgoyhen, Ana Belén; Sumikawa, Katumi; Fanselow, Michael S.; Boulter, Jim – Learning & Memory, 2017
The absence of a2* nicotinic acetylcholine receptors (nAChRs) in oriens lacunosum moleculare (OLM) GABAergic interneurons ablate the facilitation of nicotine-induced hippocampal CA1 long-term potentiation and impair memory. The current study delineated whether genetic mutations of a2* nAChRs ("Chrna2"[superscript L9'S/L9'S] and…
Descriptors: Brain, Brain Hemisphere Functions, Animals, Long Term Memory