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Publication : Cerebellar associative sensory learning defects in five mouse autism models.

First Author  Kloth AD Year  2015
Journal  Elife Volume  4
Pages  e06085 PubMed ID  26158416
Mgi Jnum  J:225991 Mgi Id  MGI:5695421
Doi  10.7554/eLife.06085 Citation  Kloth AD, et al. (2015) Cerebellar associative sensory learning defects in five mouse autism models. Elife 4:e06085
abstractText  Sensory integration difficulties have been reported in autism, but their underlying brain-circuit mechanisms are underexplored. Using five autism-related mouse models, Shank3+/DeltaC, Mecp2(R308/Y), Cntnap2-/-, L7-Tsc1 (L7/Pcp2(Cre)::Tsc1(flox/+)), and patDp(15q11-13)/+, we report specific perturbations in delay eyeblink conditioning, a form of associative sensory learning requiring cerebellar plasticity. By distinguishing perturbations in the probability and characteristics of learned responses, we found that probability was reduced in Cntnap2-/-, patDp(15q11-13)/+, and L7/Pcp2(Cre)::Tsc1(flox/+), which are associated with Purkinje-cell/deep-nuclear gene expression, along with Shank3+/DeltaC. Amplitudes were smaller in L7/Pcp2(Cre)::Tsc1(flox/+) as well as Shank3+/DeltaC and Mecp2(R308/Y), which are associated with granule cell pathway expression. Shank3+/DeltaC and Mecp2(R308/Y) also showed aberrant response timing and reduced Purkinje-cell dendritic spine density. Overall, our observations are potentially accounted for by defects in instructed learning in the olivocerebellar loop and response representation in the granule cell pathway. Our findings indicate that defects in associative temporal binding of sensory events are widespread in autism mouse models.
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