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Updated: Mar 15, 2026

Modeling Mitochondrial Disease Using Brain Organoids: A Focus on Mitochondrial Encephalomyopathy, Lactic Acidosis, and Stroke-like Episodes
Published on: October 10, 2025
Mitochondrial epileptic encephalopathy, 3-methylglutaconic aciduria and variable complex V deficiency associated with
M A Shahrour1, O Staretz-Chacham2, D Dayan3
1Department of Pediatrics, Al-Makassed Islamic Hospital, Jerusalem, Israel.
Abstract:
Mitochondrial encephalopathies are a heterogeneous group of disorders that, usually carry grave prognosis. Recently a homozygous mutation, Gly372Ser, in the TIMM50 gene, was reported in an abstract form, in three sibs who suffered from intractable epilepsy and developmental delay accompanied by 3-methylglutaconic aciduria. We now report on four patients from two unrelated families who presented with severe intellectual disability and seizure disorder, accompanied by slightly elevated lactate level, 3-methylglutaconic aciduria and variable deficiency of mitochondrial complex V. Using exome analysis we identified two homozygous missense mutations, Arg217Trp and Thr252Met, in the TIMM50 gene. The TIMM50 protein is a subunit of TIM23 complex, the mitochondrial import machinery. It serves as the major receptor in the intermembrane space, binding to proteins which cross the mitochondrial inner membrane on their way to the matrix. The mutations, which affected evolutionary conserved residues and segregated with the disease in the families, were neither present in large cohorts of control exome analyses nor in our ethnic specific exome cohort. Given the phenotypic similarity, we conclude that missense mutations in TIMM50 are likely manifesting by severe intellectual disability and epilepsy accompanied by 3-methylglutaconic aciduria and variable mitochondrial complex V deficiency. 3-methylglutaconic aciduria is emerging as an important biomarker for mitochondrial dysfunction, in particular for mitochondrial membrane defects.
Insights
New mutations in the TIMM50 gene cause severe intellectual disability and epilepsy. 3-methylglutaconic aciduria is a key biomarker for these mitochondrial membrane defects.
Area of Science:
- Genetics
- Neuroscience
- Biochemistry
Background:
- Mitochondrial encephalopathies are severe neurological disorders with poor prognoses.
- A previous study identified a TIMM50 gene mutation linked to epilepsy and developmental delay.
Observation:
- Four patients from two families presented with severe intellectual disability and seizures.
- Elevated lactate, 3-methylglutaconic aciduria, and mitochondrial complex V deficiency were observed.
- Exome analysis revealed novel homozygous missense mutations (Arg217Trp, Thr252Met) in the TIMM50 gene.
Findings:
- TIMM50 protein is crucial for the mitochondrial protein import machinery (TIM23 complex).
- The identified mutations affect conserved residues and segregate with the disease.
- These mutations were absent in control exome datasets.
Implications:
- Missense mutations in TIMM50 are associated with severe intellectual disability, epilepsy, and mitochondrial dysfunction.
- 3-methylglutaconic aciduria serves as a significant biomarker for mitochondrial membrane defects.
- This research expands the understanding of genetic causes for mitochondrial encephalopathies.
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