Abstract
The wobble position in the anticodon loop of transfer ribonucleic acid (tRNA) is subject to numerous posttranscriptional modifications. In particular, thiolation of the wobble uridine has been shown to play an important role in codon-anticodon interactions. This modification is catalyzed by a highly conserved CTU1/CTU2 complex, disruption of which has been shown to cause abnormal phenotypes in yeast, worms, and plants. We have previously suggested that a single founder splicing variant in human CTU2 causes a novel multiple congenital anomalies syndrome consisting of dysmorphic facies, renal agenesis, ambiguous genitalia, microcephaly, polydactyly, and lissencephaly (DREAM-PL). In this study, we describe five new patients with DREAM-PL phenotype and whose molecular analysis expands the allelic heterogeneity of the syndrome to five different alleles; four of which predict protein truncation. Functional characterization using patient-derived cells for each of these alleles, as well as the original founder allele; revealed a specific impairment of wobble uridine thiolation in all known thiol-containing tRNAs. Our data establish a recognizable CTU2-linked autosomal recessive syndrome in humans characterized by defective thiolation of the wobble uridine. The potential deleterious consequences for the translational efficiency and fidelity during development as a mechanism for pathogenicity represent an attractive target of future investigations.
Original language | English (US) |
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Pages (from-to) | 2108-2120 |
Number of pages | 13 |
Journal | Human mutation |
Volume | 40 |
Issue number | 11 |
DOIs | |
State | Published - Nov 1 2019 |
Funding
We thank the families in this study for their enthusiastic participation. We also thank the Sequencing and Genotyping Core Facilities at KFSHRC for their technical help. This study was supported by National Science Foundation CAREER Award 1552126 (D. F.); the King Salman Center for Disability Research (F. S. A.) and the Saudi Human Genome Program (F. S. A.), and Telethon Undiagnosed Disease Program (TUDP) consortium.
Keywords
- CTU2
- ambiguous genitalia
- dysmorphic facies
- lissencephaly
- microcephaly
- mutation
- polydactyly
- renal agenesis
- tRNA modification
- uridine thiolation
ASJC Scopus subject areas
- Genetics
- Genetics(clinical)