A Biallelic Variant of the RNA Exosome Gene EXOSC4 Causes Translational Defects Associated with a Neurodevelopmental Disorder
Fasken, M. B.; Leung, S. W.; Cureton, L. A.; Al-Awadi, M.; Al-Kindy, A.; Khoshnevis, S.; Ghalei, H.; Al-Maawali, A.; Corbett, A. H.
Show abstract
The RNA exosome is an evolutionarily conserved complex required for both precise RNA processing and decay. Mutations in EXOSC genes encoding structural subunits of the complex are linked to several autosomal recessive disorders. Here, we describe a missense allele of the EXOSC4 gene, which causes a collection of clinical features in two affected siblings. This missense mutation (NM_019037.3: exon3:c.560T>C), changes a leucine residue within a highly conserved region of EXOSC4 to proline (p.Leu187Pro). The two affected individuals presented with prenatal growth restriction, failure to thrive, global developmental delay, intracerebral and basal ganglia calcifications, and kidney failure. Homozygosity for the damaging variant was identified through exome sequencing and Sanger sequencing confirmed segregation. To explore the functional consequences of this amino acid change, we modeled EXOSC4-L187P in the corresponding budding yeast protein, Rrp41 (Rrp41-L187P). Cells that express Rrp41-L187P as the sole copy of the essential Rrp41 protein show significant growth defects. The steady-state level of both the Rrp41-L187P and the EXOSC4-L187P proteins is significantly decreased compared to control Rrp41/EXOSC4. Consistent with this observation, targets of the RNA exosome accumulate in rrp41-L187P cells, including the 7S precursor of 5.8S rRNA. Polysome profiles show a significant decrease in translation in rrp41-L187P cells as compared to control cells with apparent incorporation of 7S pre-rRNA into polysomes. Taken together, this work adds the EXOSC4 subunit of the RNA exosome to the structural subunits of this complex that have been linked to human disease and defines foundational molecular defects that could contribute to the adverse growth phenotypes caused by this novel EXOSC4 pathogenic variant.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Modeling Cancer Genomic Data in Yeast Reveals Selection Against ATM Function During Tumorigenesis 94%
- Development of AlissAID system targeting GFP or mCherry fusion protein. 94%
- Spontaneous mutations that confer resistance to 2-deoxyglucose act through Hxk2 and Snf1 pathways to regulate gene expression and HXT endocytosis 94%
Similar papers in this journal
- Functional tagging of endogenous proteins and rapid selection of cell pools (Rapid generation of endogenously tagged piwi in ovarian somatic sheath cells.) 95%
- Comprehensive analysis of yeast +1 ribosomal frameshifting unveils a novel stimulator supporting two distinct frameshifting mechanisms 95%
- Modulated termination of non-coding transcription partakes in the regulation of gene expression 95%
Similar papers in this journal
Similar papers in this journal
- The nuclear ubiquitin ligase adaptor SPOP is a conserved regulator of C9orf72 dipeptide toxicity 94%
- Trapped Topoisomerase II initiates formation of de novo duplications via the nonhomologous end-joining pathway in yeast 94%
- Unprecedentedly efficient CUG initiation of an overlapping reading frame in POLG mRNA yields novel protein POLGARF 94%
Similar papers in this journal
- A KLHL40 3’ UTR splice-altering variant causes milder NEM8, an under-appreciated disease mechanism 94%
- A VPS13D spastic ataxia mutation disrupts the conserved adaptor binding site in yeast Vps13 94%
- Familial ALS/FTD-associated RNA-Binding deficient TDP-43 mutants cause neuronal and synaptic transcript dysregulation in vitro 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.