001     138297
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024 7 _ |a 10.1038/nn.4194
|2 doi
024 7 _ |a pmid:26656643
|2 pmid
024 7 _ |a 1097-6256
|2 ISSN
024 7 _ |a 1471-003X
|2 ISSN
024 7 _ |a 1471-0048
|2 ISSN
024 7 _ |a 1546-1726
|2 ISSN
024 7 _ |a altmetric:4875359
|2 altmetric
037 _ _ |a DZNE-2020-04619
041 _ _ |a English
082 _ _ |a 570
100 1 _ |a Halder, Rashi
|0 P:(DE-2719)2810512
|b 0
|e First author
245 _ _ |a DNA methylation changes in plasticity genes accompany the formation and maintenance of memory.
260 _ _ |a London
|c 2016
|b Nature Publ. Group58142
264 _ 1 |3 online
|2 Crossref
|b Springer Science and Business Media LLC
|c 2015-12-14
264 _ 1 |3 print
|2 Crossref
|b Springer Science and Business Media LLC
|c 2016-01-01
336 7 _ |a article
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336 7 _ |a Output Types/Journal article
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336 7 _ |a Journal Article
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336 7 _ |a ARTICLE
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336 7 _ |a Journal Article
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520 _ _ |a The ability to form memories is a prerequisite for an organism's behavioral adaptation to environmental changes. At the molecular level, the acquisition and maintenance of memory requires changes in chromatin modifications. In an effort to unravel the epigenetic network underlying both short- and long-term memory, we examined chromatin modification changes in two distinct mouse brain regions, two cell types and three time points before and after contextual learning. We found that histone modifications predominantly changed during memory acquisition and correlated surprisingly little with changes in gene expression. Although long-lasting changes were almost exclusive to neurons, learning-related histone modification and DNA methylation changes also occurred in non-neuronal cell types, suggesting a functional role for non-neuronal cells in epigenetic learning. Finally, our data provide evidence for a molecular framework of memory acquisition and maintenance, wherein DNA methylation could alter the expression and splicing of genes involved in functional plasticity and synaptic wiring.
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542 _ _ |i 2015-12-14
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650 _ 7 |a Chromatin
|2 NLM Chemicals
650 _ 7 |a Histones
|2 NLM Chemicals
650 _ 2 |a Animals
|2 MeSH
650 _ 2 |a Behavior, Animal: physiology
|2 MeSH
650 _ 2 |a CA1 Region, Hippocampal: metabolism
|2 MeSH
650 _ 2 |a Chromatin: chemistry
|2 MeSH
650 _ 2 |a Conditioning, Psychological
|2 MeSH
650 _ 2 |a DNA Methylation: genetics
|2 MeSH
650 _ 2 |a DNA Methylation: physiology
|2 MeSH
650 _ 2 |a Epigenesis, Genetic: genetics
|2 MeSH
650 _ 2 |a Epigenesis, Genetic: physiology
|2 MeSH
650 _ 2 |a Fear
|2 MeSH
650 _ 2 |a Gene Expression: genetics
|2 MeSH
650 _ 2 |a Gene Expression: physiology
|2 MeSH
650 _ 2 |a Gyrus Cinguli: metabolism
|2 MeSH
650 _ 2 |a Histones: metabolism
|2 MeSH
650 _ 2 |a Male
|2 MeSH
650 _ 2 |a Memory, Long-Term: physiology
|2 MeSH
650 _ 2 |a Memory, Short-Term: physiology
|2 MeSH
650 _ 2 |a Mice
|2 MeSH
650 _ 2 |a Mice, Inbred C57BL
|2 MeSH
650 _ 2 |a Neuronal Plasticity: genetics
|2 MeSH
650 _ 2 |a Neuronal Plasticity: physiology
|2 MeSH
700 1 _ |a Hennion, Magali
|0 P:(DE-2719)2810666
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700 1 _ |a Vidal, Ramon O
|0 P:(DE-2719)9000325
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700 1 _ |a Shomroni, Orr
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700 1 _ |a Rahman, Raza-Ur
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700 1 _ |a Rajput, Ashish
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700 1 _ |a Pena Centeno, Tonatiuh
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700 1 _ |a van Bebber, Frauke
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700 1 _ |a Capece, Vincenzo
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700 1 _ |a Garcia Vizcaino, Julio C
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700 1 _ |a Schütz, Anna-Lena
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700 1 _ |a Burkhardt, Susanne
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700 1 _ |a Benito, Eva
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700 1 _ |a Navarro-Sala, Magdalena
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700 1 _ |a Javan, Sanaz Bahari
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700 1 _ |a Haass, Christian
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700 1 _ |a Schmid, Bettina
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700 1 _ |a Fischer, Andre
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700 1 _ |a Bonn, Stefan
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773 1 8 |a 10.1038/nn.4194
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|n 1
|p 102-110
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|t Nature Neuroscience
|v 19
|y 2015
|x 1097-6256
773 _ _ |a 10.1038/nn.4194
|g Vol. 19, no. 1, p. 102 - 110
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|p 102-110
|t Nature reviews / Neuroscience
|v 19
|y 2016
|x 1097-6256
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LibraryCollectionCLSMajorCLSMinorLanguageAuthor
Marc 21