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Excitatory neuronal CHD8 in the regulation of neocortical development and sensory-motor behaviors

Authors
Kweon, HanseulJung, Won BeomIm, Geun HoRyoo, JiaLee, Joon-HyukDo, HogyeongChoi, YeonsooSong, You-HyangJung, HwajinPark, HaramQiu, Lily R.Ellegood, JacobShim, Hyun-JiYang, EstherKim, HyunLerch, Jason P.Lee, Seung-HeeChung, Won-SukKim, DaesooKim, Seong-GiKim, Eunjoon
Issue Date
23-2월-2021
Publisher
CELL PRESS
Keywords
autism; calcium imaging; CHD8; cortex; functional MRI; neurodevelopment; sensory hypersensitivity; somatosensory; thalamic reticular nucleus; thalamus; TRN; ventral posterior medial; VPM; whisker
Citation
CELL REPORTS, v.34, no.8
Indexed
SCIE
SCOPUS
Journal Title
CELL REPORTS
Volume
34
Number
8
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/49550
DOI
10.1016/j.celrep.2021.108780
ISSN
2211-1247
Abstract
CHD8 (chromodomain helicase DNA-binding protein 8) is a chromatin remodeler associated with autism spectrum disorders. Homozygous Chd8 deletion in mice leads to embryonic lethality, making it difficult to assess whether CHD8 regulates brain development and whether CHD8 haploinsufficiency-related macrocephaly reflects normal CHD8 functions. Here, we report that homozygous conditional knockout of Chd8 restricted to neocortical glutamatergic neurons causes apoptosis-dependent near-complete elimination of neocortical structures, These mice, however, display normal survival and hyperactivity, anxiolytic-like behavior, and increased social interaction. They also show largely normal auditory function and moderately impaired visual and motor functions but enhanced whisker-related somatosensory function. These changes accompany thalamic hyperactivity, revealed by 15.2-Tesla fMRI, and increased intrinsic excitability and decreased inhibitory synaptic transmission in thalamic ventral posterior medial (VPM) neurons involved in somatosensation. These results suggest that excitatory neuronal CHD8 critically regulates neocortical development through anti-apoptotic mechanisms, neocortical elimination distinctly affects cognitive behaviors and sensory-motor functions in mice, and Chd8 haploinsufficiency-related macrocephaly might represent compensatory responses.
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