Juvenile Shank3 KO mice adopt distinct hunting strategies during prey capture learning
Kuhnle, C. G.; Grimes, M.; Casanova, V. M. S.; Turrigiano, G. G.; Van Hooser, S. D.
Show abstract
Mice are opportunistic omnivores that readily learn to hunt and eat insects such as crickets. The details of how mice learn these behaviors and how these behaviors may differ in strains with altered neuroplasticity are unclear. We quantified the behavior of juvenile wild type and Shank3 knockout mice as they learned to hunt crickets during the critical period for ocular dominance plasticity. This stage involves heightened cortical plasticity including homeostatic synaptic scaling, which requires Shank3, a glutamatergic synaptic protein that, when mutated, produces Phelan-McDermid syndrome and is often comorbid with autism spectrum disorder (ASD). Both strains showed interest in examining live and dead crickets and learned to hunt. Shank 3 knockout mice took longer to become proficient, and, after 5 days, did not achieve the efficiency of wild type mice in either time-to-capture or distance-to-capture. Shank3 knockout mice also exhibited different characteristics when pursuing crickets that defied explanation as a simple motor deficit. Although both genotypes moved at the same average speed when approaching a cricket, Shank3 KO mice paused more often during approaches, did not begin final accelerations toward crickets as early, and did not close the distance gap to the cricket as quickly as wild type mice. These differences in Shank3 KO mice are reminiscent of some behavioral characteristics of individuals with ASD as they perform complex tasks, such as slower action initiation and completion. This paradigm will be useful for exploring the neural circuit mechanisms that underlie these learning and performance differences in monogenic ASD rodent models.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Impaired refinement of kinematic variability in Huntington disease mice on an automated home-cage forelimb motor task 96%
- Multidimensional analysis of a social behavior identifies regression and phenotypic heterogeneity in a female mouse model for Rett syndrome 96%
- Whisking asymmetry signals motor preparation and the behavioral state of mice 95%
Similar papers in this journal
- A novel, ataxic mouse model of Ataxia Telangiectasia caused by a clinically relevant nonsense mutation 95%
- Distance estimation from monocular cues in an ethological visuomotor task 95%
- Deleting Mecp2 from the entire cerebellum rather than its neuronal subtypes causes a delay in motor learning in mice 95%
Similar papers in this journal
- The locus coeruleus directs sensory-motor reflex amplitude across environmental contexts 94%
- The conserved endocannabinoid anandamide modulates olfactory sensitivity to induce hedonic feeding in C. elegans 93%
- Transient dopamine neuron activity precedes and encodes the vigor of contralateral movements 92%
Similar papers in this journal
- An automated two-choice social operant task for probing moment-to-moment changes in social satiety 94%
- The neuropeptide Pth2 modulates social behavior and anxiety in zebrafish 94%
- The Adaptor Protein 2 (AP2) complex modulates habituation and behavioral selection across multiple pathways and time windows 94%
"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.