Hyperactive ACC-MDT Pathway Suppresses Prepulse Inhibition in Mice

Author:

Kim Yangsik123ORCID,Noh Young Woo4ORCID,Kim Kyungdeok4,Kim Eunjoon34

Affiliation:

1. Mental Health Research Institute, National Center for Mental Health, Seoul, South Korea

2. Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South Korea

3. Center for Synaptic Brain Dysfunction, Institute for Basic Science, Daejeon, South Korea

4. Department of Biological Science, Korea Advanced Institute of Science and Technology, Daejeon, South Korea

Abstract

Abstract Altered prepulse inhibition (PPI) is an endophenotype associated with multiple brain disorders, including schizophrenia. Circuit mechanisms that regulate PPI have been suggested, but none has been demonstrated through direct manipulations. IRSp53 is an abundant excitatory postsynaptic scaffold implicated in schizophrenia, autism spectrum disorders, and attention-deficit/hyperactivity disorder. We found that mice lacking IRSp53 in cortical excitatory neurons display decreased PPI. IRSp53-mutant layer 6 cortical neurons in the anterior cingulate cortex (ACC) displayed decreased excitatory synaptic input but markedly increased neuronal excitability, which was associated with excessive excitatory synaptic input in downstream mediodorsal thalamic (MDT) neurons. Importantly, chemogenetic inhibition of mutant neurons projecting to MDT normalized the decreased PPI and increased excitatory synaptic input onto MDT neurons. In addition, chemogenetic activation of MDT-projecting layer 6 neurons in the ACC decreased PPI in wild-type mice. These results suggest that the hyperactive ACC-MDT pathway suppresses PPI in wild-type and IRSp53-mutant mice.

Funder

Institute for Basic Science

National Center for Mental Health in Republic of Korea

Publisher

Oxford University Press (OUP)

Subject

Psychiatry and Mental health

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