Biallelic variants in COX18 cause a mitochondrial disorder primarily manifesting as peripheral neuropathy
Armirola-Ricaurte, C.; Morant, L.; Adant, I.; Hamed, S. A.; Pipis, M.; Efthymiou, S.; Amor-Barris, S.; Atkinson, D.; Van de Vondel, L.; Tomic, A.; de Vriendt, E.; Zuchner, S.; Ghesquiere, B.; Hanna, M. G.; Houlden, H.; Lunn, M.; Reilly, M. M.; Milic Rasic, V.; Jordanova, A.
Show abstract
Defects in mitochondrial dynamics are a common cause of Charcot-Marie-Tooth disease (CMT), while primary deficiencies in the mitochondrial respiratory chain (MRC) are rare and atypical for this etiology. This study aims to report COX18 as a novel CMT-causing gene. This gene encodes an assembly factor of mitochondrial Complex IV (CIV) that translocates the C-terminal tail of MTCO2 across the mitochondrial inner membrane. Exome sequencing was performed in four affected individuals. The patients and available family members underwent thorough neurological and electrophysiological assessment. The impact of one of the identified variants on splicing, protein levels, and mitochondrial bioenergetics was investigated in patient-derived lymphoblasts. The functionality of the mutant protein was assessed using a Proteinase K protection assay and immunoblotting. Neuronal relevance of COX18 was assessed in a Drosophila melanogaster knockdown model. Exome sequencing coupled with homozygosity mapping revealed a homozygous splice variant c.435-6A>G in COX18 in two siblings with early-onset progressive axonal sensory-motor peripheral neuropathy. By querying external databases, we identified two additional families with rare deleterious biallelic variants in COX18. All affected individuals presented with axonal CMT and some patients also exhibited central nervous system symptoms, such as dystonia and spasticity. Functional characterization of the c.435-6A>G variant demonstrated that it leads to the expression of an alternative transcript that lacks exon 2, resulting in a stable but defective COX18 isoform. The mutant protein impairs CIV assembly and activity, leading to a reduction in mitochondrial membrane potential. Downregulation of the COX18 homolog in Drosophila melanogaster displayed signs of neurodegeneration, including locomotor deficit and progressive axonal degeneration of sensory neurons. Our study presents genetic and functional evidence that supports COX18 as a newly identified gene candidate for autosomal recessive axonal CMT with or without central nervous system involvement. These findings emphasize the significance of peripheral neuropathy within the spectrum of primary mitochondrial disorders and the role of mitochondrial CIV in the development of CMT. Our research has important implications for the diagnostic workup of CMT patients.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Biallelic and de novo variants in ATP6V0A1 cause progressive myoclonus epilepsy and developmental and epileptic encephalopathy 92%
- Long non-coding RNA TUG1 is down-regulated in Friedreich's ataxia. 91%
- Lysosomal dysfunction impairs mitochondrial quality control and predicts neurodegeneration in TBCKE 91%
Similar papers in this journal
- Missense variants affecting the actin-binding domains of PLS3 cause X-linked congenital diaphragmatic hernia and body wall defects 93%
- Bi-allelic loss-of-function variants in PPFIBP1 cause a neurodevelopmental disorder with microcephaly, epilepsy and periventricular calcifications 93%
- A recurrent de novo splice site variant involving DNM1 alternative exon 10a causes developmental and epileptic encephalopathy through a dominant-negative mechanism 93%
Similar papers in this journal
- New C3H KitN824K/WT cancer mouse model develops late-onset malignant mammary tumors with high penetrance 93%
- MHCII reduction is insufficient to protect mice from alpha-synuclein-induced degeneration and the Parkinson's HLA locus exhibits epigenetic regulation 92%
- Exome Sequencing in Individuals with Isolated Biliary Atresia 92%
Similar papers in this journal
- DOCK3 is a dosage-sensitive regulator of skeletal muscle and Duchenne muscular dystrophy-associated pathologies. 92%
- A KLHL40 3’ UTR splice-altering variant causes milder NEM8, an under-appreciated disease mechanism 92%
- Loss of adenylosuccinate synthetase 1 in mice recapitulates features of ADSS1 myopathy 92%
"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.