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DSCR1-mediated TET1 splicing regulates miR-124 expression to control adult hippocampal neurogenesis

Author(s)
Choi, ChiyeolKim, TaehoonChang, Karen T.Min, Kyung-Tai
Issued Date
2019-07
DOI
10.15252/embj.2018101293
URI
https://scholarworks.unist.ac.kr/handle/201301/27380
Fulltext
https://www.embopress.org/lookup/doi/10.15252/embj.2018101293
Citation
EMBO JOURNAL, v.38, no.14, pp.e101293
Abstract
Whether epigenetic factors such as DNA methylation and microRNAs interact to control adult hippocampal neurogenesis is not fully understood. Here, we show that Down syndrome critical region 1 (DSCR1) protein plays a key role in adult hippocampal neurogenesis by modulating two epigenetic factors: TET1 and miR-124. We find that DSCR1 mutant mice have impaired adult hippocampal neurogenesis. DSCR1 binds to TET1 introns to regulate splicing of TET1, thereby modulating TET1 level. Furthermore, TET1 controls the demethylation of the miRNA-124 promoter to modulate miR-124 expression. Correcting the level of TET1 in DSCR1 knockout mice is sufficient to prevent defective adult neurogenesis. Importantly, restoring DSCR1 level in a Down syndrome mouse model effectively rescued adult neurogenesis and learning and memory deficits. Our study reveals that DSCR1 plays a critical upstream role in epigenetic regulation of adult neurogenesis and provides insights into potential therapeutic strategy for treating cognitive defects in Down syndrome.
Publisher
WILEY
ISSN
0261-4189
Keyword (Author)
adult hippocampal neurogenesisDown syndromeDSCR1TET1miR-124
Keyword
DOWN-SYNDROMESUBVENTRICULAR ZONENEURAL STEMFUNCTIONAL IMPLICATIONSENDOGENOUS INHIBITORALZHEIMERS-DISEASEINCREASED DOSAGEDENTATE GYRUSMOUSE MODELREGION 1

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