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Updated: May 28, 2026

Preparation of Acute Hippocampal Slices from Rats and Transgenic Mice for the Study of Synaptic Alterations during Aging and Amyloid Pathology
Published on: March 23, 2011
Inhibition of histone lysine demethylase restores learning and memory in aged mice
Shail Bhatt1, Lachlan MacBean2, Eniko Kramar3
1Centre for Craniofacial and Regenerative Biology, Guy's Hospital, King's College London, SE1 9RT.
Abstract:
Chromatin undergoes dramatic changes during the ageing process. In the brain, these chromatin changes are thought to underlie age-associated deficits in the activity-dependent gene transcription necessary for memory consolidation. Here, we show that the levels of a specific histone post-translational modification (PTM), trimethylation of lysine 4 on histone 3 (H3K4me3) is markedly increased in the hippocampus of aged mice and that the activity-induced increase in H3K4me3 that is observed in response to a learning stimulus in young mice, is severely blunted in the aged hippocampus. H3K4me3 typically marks open, accessible chromatin at the transcriptional start sites (TSSs) of actively transcribed genes. We identify altered H3K4me3 peaks at TSSs and show that ca. 90% of the activity-induced H3K4me3 changes at TSSs are either absent or reduced in the aged hippocampus. To understand the biological significance of these age-associated changes, we screened a library of pharmacological compounds for compounds that can alter H3K4me3 levels in hippocampal neurons. We show that treatment of aged mice with one of these, the LSD1 inhibitor ORY-1001, restored normal learning and memory in object location and recognition tasks. Furthermore, we show that ORY-1001 treatment increased long-term potentiation (LTP), a form of synaptic plasticity deficient in the aged hippocampus. These findings suggest that targeting the epigenetic machinery that regulates activity-dependent gene transcription may represent an avenue for treating age-associated cognitive impairment.
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