Interval Timing is altered in male Nrxn1+/- mice: A Model of Autism Spectrum Disorder
Roddick, K. M.; Habib, E. B.; Brown, R. E.; Balcı, F.
Show abstract
Autism spectrum disorder (ASD) is characterised by impaired social interactions and communication and increased repetitive and stereotypical behaviour. Neuroimaging shows functional abnormalities in brain areas involved in temporal processing of autistic individuals, and autistic individuals show deficits in interval timing. Neurexin (NRXN) mutations have been identified in a wide variety of neuropsychiatric disorders, including ASD, and Nrxn1+/- mice possess a mutation that disrupts the , {beta}, and {gamma} isoforms of Nrxn1, a gene involved in synapse structure. We investigated the interval timing abilities of the Nrxn1+/- mouse model of ASD in the peak interval procedure using a 15-second target interval and compared their performance with that of Nrxn1+/+ and Nrxn1{Delta}S5/- rescue mice. Two-month-old male Nrxn1+/+ (C57BL/6J), Nrxn1+/-, and Nrxn1{Delta}S5/-, mice were trained to obtain sucrose liquid rewards 15s after the onset of a discriminative stimulus (discrete fixed-interval training), and their timing responses were tested in non-reinforced probe trials. Our analysis of responses in individual trials revealed that Nrxn1+/- mice had overall earlier timing responses. This difference was manifested as earlier termination of responding in terms of the response curves. These findings are consistent with leftward shifts observed with experimental animal models of ASD. In conclusion, we believe that these results are indicative of a biased long-term memory in the Nrxn1+/- mouse model of ASD and may capture the timing deficit observed in autistic individuals. Lay SummaryNeurexins help nerve cells connect and communicate with each other, and changes in these genes are often seen in people with autism. Mice with a change in their neurexin 1 gene, called Nrxn1+/- mice, show autism-like behaviours. In a test that involves judging time, these mice respond early, similar to some people with autism. This study helps develop our understanding of how interval timing is affected in ASD.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Heritable variation in locomotion, reward sensitivity and impulsive behaviors in a genetically diverse inbred mouse panel 96%
- Deletion of the voltage-gated calcium channel, CaV1.3, causes deficits in motor performance and associative learning 95%
- Selective behavioural impairments in mice heterozygous for the cross disorder psychiatric risk gene DLG2 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Systematic analysis of goal-related movement sequences during maternal behavior in a female mouse model for Rett syndrome 95%
- Opportunities for risk-taking during play alters cognitive performance and prefrontal inhibitory signalling in rats of both sexes 95%
- Cholinergic modulation of rearing in rats performing a spatial memory task 94%
Similar papers in this journal
- NMDA receptor in vasopressin 1b neurons is not required for short-term social memory, object memory or aggression. 96%
- The role of parvalbumin interneuron GIRK signaling in regulation of affect and cognition inmale and female mice 95%
- Loss of GABA co-transmission from cholinergic neurons impairs behaviors related to hippocampal, striatal, and medial prefrontal cortex functions 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.