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Publication : Abnormal Striatal Development Underlies the Early Onset of Behavioral Deficits in Shank3B<sup>-/-</sup> Mice.

First Author  Peixoto RT Year  2019
Journal  Cell Rep Volume  29
Issue  7 Pages  2016-2027.e4
PubMed ID  31722214 Mgi Jnum  J:284647
Mgi Id  MGI:6385985 Doi  10.1016/j.celrep.2019.10.021
Citation  Peixoto RT, et al. (2019) Abnormal Striatal Development Underlies the Early Onset of Behavioral Deficits in Shank3B(-/-) Mice. Cell Rep 29(7):2016-2027.e4
abstractText  The neural substrates and pathophysiological mechanisms underlying the onset of cognitive and motor deficits in autism spectrum disorders (ASDs) remain unclear. Mutations in ASD-associated SHANK3 in mice (Shank3B(-/-)) result in the accelerated maturation of corticostriatal circuits during the second and third postnatal weeks. Here, we show that during this period, there is extensive remodeling of the striatal synaptic proteome and a developmental switch in glutamatergic synaptic plasticity induced by cortical hyperactivity in striatal spiny projection neurons (SPNs). Behavioral abnormalities in Shank3B(-/-) mice emerge during this stage and are ameliorated by normalizing excitatory synapse connectivity in medial striatal regions by the downregulation of PKA activity. These results suggest that the abnormal postnatal development of striatal circuits is implicated in the onset of behavioral deficits in Shank3B(-/-) mice and that modulation of postsynaptic PKA activity can be used to regulate corticostriatal drive in developing SPNs of mouse models of ASDs and other neurodevelopmental disorders.
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