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TMEM63C mutations cause mitochondrial morphology defects and underlie hereditary spastic paraplegia

Luis Carlos Tábara, Fatema Al-Salmi, Reza Maroofian, Amna Al‐Futaisi, Fathiya Al-Murshedi, Joanna Kennedy, Jacob Day, Thomas Courtin, Aisha Al‐Khayat, Hamid Galedari, Neda Mazaheri, Margherita Protasoni, Mark Johnson, Joseph S. Leslie, Claire Salter

Brain · 2022 · ▲ 39 citations

Abstract

The hereditary spastic paraplegias (HSP) are among the most genetically diverse of all Mendelian disorders. They comprise a large group of neurodegenerative diseases that may be divided into 'pure HSP' in forms of the disease primarily entailing progressive lower-limb weakness and spasticity, and 'complex HSP' when these features are accompanied by other neurological (or non-neurological) clinical signs. Here, we identified biallelic variants in the transmembrane protein 63C (TMEM63C) gene, encoding a predicted osmosensitive calcium-permeable cation channel, in individuals with hereditary spastic paraplegias associated with mild intellectual disability in some, but not all cases. Biochemical and microscopy analyses revealed that TMEM63C is an endoplasmic reticulum-localized protein, which is particularly enriched at mitochondria-endoplasmic reticulum contact sites. Functional in cellula studies indicate a role for TMEM63C in regulating both endoplasmic reticulum and mitochondrial morphologies. Together, these findings identify autosomal recessive TMEM63C variants as a cause of pure and complex HSP and add to the growing evidence of a fundamental pathomolecular role of perturbed mitochondrial-endoplasmic reticulum dynamics in motor neurone degenerative diseases.

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Provenance

Source
OpenAlex
DOI
10.1093/brain/awac123
Canonical
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Fetched
2026-08-26 MST

Cite this

APA
Tábara, L.C., Al-Salmi, F., Maroofian, R., Al‐Futaisi, A., Al-Murshedi, F., Kennedy, J., Day, J., Courtin, T., Al‐Khayat, A., Galedari, H., Mazaheri, N., Protasoni, M., Johnson, M., Leslie, J.S., Salter, C., Rawlins, L.E., Fasham, J., Al‐Maawali, A., Voutsina, N., &amp; Charles, P. (2022). TMEM63C mutations cause mitochondrial morphology defects and underlie hereditary spastic paraplegia. <em>Brain</em>. https://doi.org/10.1093/brain/awac123
Vancouver
Tábara LC, Al-Salmi F, Maroofian R, Al‐Futaisi A, Al-Murshedi F, Kennedy J, et al. TMEM63C mutations cause mitochondrial morphology defects and underlie hereditary spastic paraplegia. Brain. 2022. doi:10.1093/brain/awac123.
BibTeX
@article{luis2022TMEMCm, title = {TMEM63C mutations cause mitochondrial morphology defects and underlie hereditary spastic paraplegia}, author = {Luis Carlos Tábara and Fatema Al-Salmi and Reza Maroofian and Amna Al‐Futaisi and Fathiya Al-Murshedi and Joanna Kennedy and Jacob Day and Thomas Courtin and Aisha Al‐Khayat and Hamid Galedari and Neda Mazaheri and Margherita Protasoni and Mark Johnson and Joseph S. Leslie and Claire Salter and Lettie E. Rawlins and James Fasham and Almundher Al‐Maawali and Nikol Voutsina and Perrine Charles and Laura Harrold and Boris Keren and Edmund R.S. Kunji and Barbara Vona and Gholamreza Jelodar}, journal = {Brain}, year = {2022}, doi = {10.1093/brain/awac123}, }

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