Deletion of glycine transporter 1 (GlyT1) in forebrain neurons facilitates reversal learning: Enhanced cognitive adaptability?
Делецией глицинового транспортера 1 (GlyT1) в нейронах переднего мозга облегчает обучение с реверсией: усиление когнитивной адаптивности?
2009-01-01
SCID: 54.1/nnzzvaz2
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GlyT1 deletionNMDAR functioncognitive flexibilityproactive interferencereversal learning
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Abstract (AI)
Local availability of glycine near N-methyl-D-aspartate receptors (NMDARs) is partly regulated by neuronal glycine transporter 1 (GlyT1), which can therefore modulate NMDAR function because binding to the glycine site of the NMDAR is necessary for channel activation. Disrupting GlyT1 in forebrain neurons has been shown to enhance Pavlovian conditioning and object recognition memory. Here, the authors report that the same genetic manipulation facilitated reversal learning in the water maze test of reference memory, but did not lead to any clear improvement in a working memory version of the water maze test. Facilitation in a nonspatial discrimination reversal task conducted on a T maze was also observed, supporting the conclusion that forebrain neuronal GlyT1 may modulate the flexibility in (new) learning and relevant mnemonic functions. One possibility is that these phenotypes may reflect reduced susceptibility to certain forms of proactive interference. This may be relevant for the suggested clinical application of GlyT1 inhibitors in the treatment of cognitive deficits, including schizophrenia, which is characterized by cognitive inflexibility in addition to the positive symptoms of the disease.
Key Findings
1
Forebrain neuronal GlyT1 deletion facilitated reversal learning in the water-maze reference-memory task.
2
Forebrain neuronal GlyT1 may enhance flexibility in new learning and related mnemonic functions.
3
GlyT1 deletion did not clearly improve performance in the working-memory version of the water maze.
4
The behavioral effects may reflect reduced susceptibility to certain forms of proactive interference, with potential relevance to GlyT1 inhibitor treatments for cognitive inflexibility.
5
The manipulation also facilitated reversal learning in a nonspatial T-maze discrimination task.
Research Object
Forebrain neuronal glycine transporter 1 (GlyT1) in mice
Research Subject
The effects of forebrain neuronal GlyT1 deletion on reversal learning, working memory, and cognitive flexibility
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2009-01-01
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