Anterior cingulate cortex-related functional hyperconnectivity underlies sensory hypersensitivity in Grin2b-mutant mice

  • Lee, Soowon
  • Jung, Won Beom
  • Moon, Heera
  • Im, Geun Ho
  • Noh, Young Woo
  • 외 8명
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초록

Sensory abnormalities are observed in similar to 90% of individuals with autism spectrum disorders (ASD), but the underlying mechanisms are poorly understood. GluN2B, an NMDA receptor subunit that regulates long-term depression and circuit refinement during brain development, has been strongly implicated in ASD, but whether GRIN2B mutations lead to sensory abnormalities remains unclear. Here, we report that Grin2b-mutant mice show behavioral sensory hypersensitivity and brain hyperconnectivity associated with the anterior cingulate cortex (ACC). Grin2b-mutant mice with a patient-derived C456Y mutation (Grin2b C456Y/+) show sensory hypersensitivity to mechanical, thermal, and electrical stimuli through supraspinal mechanisms. c-fos and functional magnetic resonance imaging indicate that the ACC is hyperactive and hyperconnected with other brain regions under baseline and stimulation conditions. ACC pyramidal neurons show increased excitatory synaptic transmission. Chemogenetic inhibition of ACC pyramidal neurons normalizes ACC hyperconnectivity and sensory hypersensitivity. These results suggest that GluN2B critically regulates ASD-related cortical connectivity and sensory brain functions.

키워드

AUTISM SPECTRUM DISORDERSDEFAULT MODE NETWORKLONG-TERM DEPRESSIONNMDA RECEPTORSSYNAPTIC PLASTICITYGENE GRIN2BPAINSUBUNITHIPPOCAMPALCHILDREN
제목
Anterior cingulate cortex-related functional hyperconnectivity underlies sensory hypersensitivity in Grin2b-mutant mice
저자
Lee, SoowonJung, Won BeomMoon, HeeraIm, Geun HoNoh, Young WooShin, WangyongKim, Yong GyuYi, Jee HyunHong, Seok JunJung, YongwhanAhn, SunjooKim, Seong-GiKim, Eunjoon
DOI
10.1038/s41380-024-02572-y
발행일
2024-10
유형
Article; Early Access
저널명
Molecular Psychiatry
29
10
페이지
3195 ~ 3207