OAK

Cereblon maintains synaptic and cognitive function by regulating BK channel.

Metadata Downloads
Abstract
Mutations in the cereblon (CRBN) gene cause human intellectual disability, one of the most common cognitive disorders. However, the molecular mechanisms of CRBN-related intellectual disability remain poorly understood. We investigated the role of CRBN in synaptic function and animal behavior using male mouse and Drosophila models. Crbn knock-out (KO) mice showed normal brain and spine morphology as well as intact synaptic plasticity; however, they also exhibited decreases in synaptic transmission and presynaptic release probability exclusively in excitatory synapses. Presynaptic function was impaired not only by loss of CRBN expression, but also by expression of pathogenic CRBN mutants (human R419X mutant and Drosophila G552X mutant). We found that the BK channel blockers paxilline and iberiotoxin reversed this decrease in presynaptic release probability in Crbn KO mice. In addition, paxilline treatment also restored normal cognitive behavior in CrbnKOmice. These results strongly suggest that increased BK channel activity is the pathological mechanism of intellectual disability in CRBN mutations.
Author(s)
Choi, Tae-YongLee, Seung-HyunKim, Yoon-JungBae, Jae RyulLee, Kwang MinJo, YouhwaKim, Soo-JeongLee, A-RamChoi, SekyuChoi, La-MeeBang, SunhoeSong, Mi-RyoungChung, JongkyeongLee, Kyung JinKim, Sung HyunPark, Chul-SeungChoi, Se-Young
Issued Date
2018-04
Type
Article
DOI
10.1523/JNEUROSCI.2081-17.2018
URI
https://scholar.gist.ac.kr/handle/local/13303
Publisher
Society for Neuroscience
Citation
Journal of Neuroscience, v.38, no.14, pp.3571 - 3583
ISSN
0270-6474
Appears in Collections:
Department of Life Sciences > 1. Journal Articles
공개 및 라이선스
  • 공개 구분공개
파일 목록
  • 관련 파일이 존재하지 않습니다.

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.