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공공누리This item is licensed Korea Open Government License

dc.contributor.author
강효진
dc.contributor.author
한기훈
dc.contributor.author
김윤희
dc.contributor.author
이연금
dc.contributor.author
장인화
dc.contributor.author
강혜림
dc.contributor.author
진춘매
dc.date.accessioned
2022-01-12T02:34:47Z
dc.date.available
2022-01-12T02:34:47Z
dc.date.issued
2019-09-19
dc.identifier.issn
1662-5099
dc.identifier.uri
https://repository.kisti.re.kr/handle/10580/16244
dc.description.abstract
Genetic variants of the SH3 and multiple ankyrin repeat domains 3 (SHANK3) gene, which encodes excitatory postsynaptic core scaffolds cause numerous brain disorders. Several lines of Shank3 knock-out (KO) mice with deletions of different Shank3 exons have previously been generated and characterized. The different Shank3 KO mouse lines have both common and line-specific phenotypes. Shank3 isoform diversity is considered a mechanism underlying phenotypic heterogeneity, and compensatory changes through regulation of Shank3 expression may contribute to this heterogeneity. However, whether such compensatory changes occur in Shank3 KO mouse lines has not been investigated in detail. Using previously reported RNA-sequencing analyses, we identified an unexpected increase in Shank3 transcripts in two different Shank3 mutant mouse lines (Shank3B and Shank3ΔC) having partial deletions of Shank3 exons. We validated an increase in Shank3 transcripts in the hippocampus, cortex, and striatum, but not in the cerebellum, of Shank3B heterozygous (HET) and KO mice, using qRT-PCR analyses. In particular, expression of the N-terminal exons 1–12, but not the more C-terminal exons 19–22, was observed to increase in Shank3B mice with deletion of exons 13–16. This suggests a selective compensatory activation of upstream Shank3 promoters. Furthermore, using domain-specific Shank3 antibodies, we confirmed that the increased Shank3 transcripts in Shank3B KO mice produced a small Shank3 isoform that was not detected in wild-type mice. Taken together, our results illustrate another layer of complexity in the regulation of Shank3 expression in the brain, which may also contribute to the phenotypic heterogeneity of different Shank3 KO mouse lines.
dc.language.iso
eng
dc.publisher
Frontiers Media S.A.
dc.relation.ispartofseries
FRONTIERS IN MOLECULAR NEUROSCIENCE;
dc.title
Unexpected compensatory increase in Shank3 transcripts in Shank3 knock-out mice having partial deletions of exons
dc.identifier.doi
10.3389/fnmol.2019.00228
dc.contributor.approver
KOAR, ADMIN
dc.date.dateaccepted
2022-01-12T02:34:47Z
dc.date.datesubmitted
2022-01-12T02:34:47Z
dc.identifier.url
https://scienceon.kisti.re.kr/srch/selectPORSrchArticle.do?cn=NART109896888
dc.subject.keyword
Shank3
dc.subject.keyword
넉아웃 마우스
dc.subject.keyword
전사체
dc.subject.keyword
보상
dc.subject.keyword
엑손
dc.subject.keyword
Knock-out mice
dc.subject.keyword
Transcripts
dc.subject.keyword
Compensation
dc.subject.keyword
Exon
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7. KISTI 연구성과 > 학술지 발표논문
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