| Literature DB >> 33242396 |
Fatema Alzahrani1, Hiroyuki Kuwahara2, Yongkang Long2, Mohammed Al-Owain3, Mohamed Tohary3, Moeenaldeen AlSayed3, Mohammed Mahnashi4, Lana Fathi4, Maha Alnemer5, Mohamed H Al-Hamed1, Gabrielle Lemire6, Kym M Boycott6, Mais Hashem1, Wenkai Han2, Almundher Al-Maawali7, Feisal Al Mahrizi8, Khalid Al-Thihli7, Xin Gao9, Fowzan S Alkuraya10.
Abstract
We have previously described a heart-, eye-, and brain-malformation syndrome caused by homozygous loss-of-function variants in SMG9, which encodes a critical component of the nonsense-mediated decay (NMD) machinery. Here, we describe four consanguineous families with four different likely deleterious homozygous variants in SMG8, encoding a binding partner of SMG9. The observed phenotype greatly resembles that linked to SMG9 and comprises severe global developmental delay, microcephaly, facial dysmorphism, and variable congenital heart and eye malformations. RNA-seq analysis revealed a general increase in mRNA expression levels with significant overrepresentation of core NMD substrates. We also identified increased phosphorylation of UPF1, a key SMG1-dependent step in NMD, which most likely represents the loss of SMG8--mediated inhibition of SMG1 kinase activity. Our data show that SMG8 and SMG9 deficiency results in overlapping developmental disorders that most likely converge mechanistically on impaired NMD.Entities:
Keywords: NMD; RNA-seq; SMG1C; cataract; congenital heart disease; intellectual disability; microcephaly
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Year: 2020 PMID: 33242396 PMCID: PMC7820624 DOI: 10.1016/j.ajhg.2020.11.007
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025