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Functional validation of novel MKS3/TMEM67 mutations in COACH syndrome

Authors
Lee, So-HyunNam, Tai-SeungLi, WentingKim, Jung HaYoon, WoongChoi, Yoo-DukKim, Kun-HeeCai, HuaKim, Min JungKim, ChangsooChoy, Hyon E.Kim, NacksungChay, Kee OhKim, Myeong-KyuChoi, Seok-Yong
Issue Date
Aug-2017
Publisher
NATURE PUBLISHING GROUP
Citation
SCIENTIFIC REPORTS, v.7
Journal Title
SCIENTIFIC REPORTS
Volume
7
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/8181
DOI
10.1038/s41598-017-10652-z
ISSN
2045-2322
Abstract
COACH syndrome is an autosomal recessive developmental disorder, a subtype of Joubert syndrome and related disorders, characterized by cerebellar vermis hypoplasia, oligophrenia, ataxia, coloboma, and hepatic fibrosis. Although mutations in TMEM67 (transmembrane protein 67)/MKS3 (Meckel-Gruber syndrome, type 3) were reported to cause COACH syndrome, this causality has not verified by functional studies. In a 20-year-old Korean man, we found cerebellar ataxia, isolated elevation in serum.-glutamyl transpeptidase (gamma-GTP) activity, oligophrenia, the molar tooth sign (MTS) in the brain MR images and congenital hepatic fibrosis (CHF). Two novel compound heterozygous mutations were found in TMEM67 in the patient: i) missense mutation (c.395 G > C and p.Gly132Ala) in exon 3, and ii) deletion in exon 26 (c. 2758delT and p. Tyr920ThrfsX40). Western blotting showed that the p. Tyr920ThrfsX40 mutation accelerates turnover of the TMEM67 protein. Although wild-type human TMEM67 RNA rescued phenotypes of zebrafish embryos injected with anti-sense oligonucleotide morpholinos against tmem67, the two human TMEM67 RNAs individually harboring the two mutations did not. Finally, Wnt signaling, but not Hedgehog signaling, was suppressed in tmem67 morphants. To the best of our knowledge, this is the first report verifying the causality between COACH syndrome and TMEM67, which will further our understanding of molecular pathogenesis of the syndrome.
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