Mutations in GTPBP3 Cause a Mitochondrial Translation Defect Associated with Hypertrophic Cardiomyopathy, Lactic Acidosis, and Encephalopathy

Archive ouverte

Kopajtich, Robert | Nicholls, Thomas | Rorbach, Joanna | Metodiev, Metodi d. | Freisinger, Peter | Mandel, Hanna | Vanlander, Arnaud | Ghezzi, Daniele | Carrozzo, Rosalba | Taylor, Robert w. | Marquard, Klaus | Murayama, Kei | Wieland, Thomas | Schwarzmayr, Thomas | Mayr, Johannes a. | Pearce, Sarah f. | Powell, Christopher a. | Saada, Ann | Ohtake, Akira | Invernizzi, Federica | Lamantea, Eleonora | Sommerville, Ewen w. | Pyle, Angela | Chinnery, Patrick f. | Crushell, Ellen | Okazaki, Yasushi | Kohda, Masakazu | Kishita, Yoshihito | Tokuzawa, Yoshimi | Assouline, Zahra | Rio, Marlène | Feillet, François | Mousson de camaret, Bénédict | Chrétien, Dominique | Munnich, Arnold | Menten, Björn | Sante, Tom | Smet, Joél | Régal, Luc | Lorber, Abraham | Khoury, Asaad | Zeviani, Massimo | Strom, Tim m. | Meitinger, Thomas | Bertini, Enrico s. | Van coster, Rudy | Klopstock, Thomas | Rötig, Agnès | Haack, Tobias b. | Minczuk, Michal | Prokisch, Holger

Edité par CCSD ; Elsevier (Cell Press) -

International audience. Respiratory chain deficiencies exhibit a wide variety of clinical phenotypes resulting from defective mitochondrial energy production through oxidative phosphorylation. These defects can be caused by either mutations in the mtDNA or mutations in nuclear genes coding for mitochondrial proteins. The underlying pathomechanisms can affect numerous pathways involved in mitochondrial physiology. By whole-exome and candidate gene sequencing, we identified 11 individuals from 9 families carrying compound heterozygous or homozygous mutations in GTPBP3, encoding the mitochondrial GTP-binding protein 3. Affected individuals from eight out of nine families presented with combined respiratory chain complex deficiencies in skeletal muscle. Mutations in GTPBP3 are associated with a severe mitochondrial translation defect, consistent with the predicted function of the protein in catalyzing the formation of 5-taurinomethyluridine (τm(5)U) in the anticodon wobble position of five mitochondrial tRNAs. All case subjects presented with lactic acidosis and nine developed hypertrophic cardiomyopathy. In contrast to individuals with mutations in MTO1, the protein product of which is predicted to participate in the generation of the same modification, most individuals with GTPBP3 mutations developed neurological symptoms and MRI involvement of thalamus, putamen, and brainstem resembling Leigh syndrome. Our study of a mitochondrial translation disorder points toward the importance of posttranscriptional modification of mitochondrial tRNAs for proper mitochondrial function.

Consulter en ligne

Suggestions

Du même auteur

Genetic landscape of pediatric acute liver failure of indeterminate origin

Archive ouverte | Lenz, Dominic | CCSD

International audience. Background & Aims: Pediatric acute liver failure (PALF) is a life-threatening condition. In Europe, main causes are viral infections (12-16%) and inherited metabolic diseases (14-28%). Ye...

ATAD3 gene cluster deletions cause cerebellar dysfunction associated with altered mitochondrial DNA and cholesterol metabolism

Archive ouverte | Desai, Radha | CCSD

International audience. Although mitochondrial disorders are clinically heterogeneous, they frequently involve the central nervous system and are among the most common neurogenetic disorders. Identifying the causal ...

Defining clinical subgroups and genotype-phenotype correlations in NBAS-associated disease across 110 patients.

Archive ouverte | Staufner, Christian | CCSD

International audience. PURPOSE: Pathogenic variants in neuroblastoma-amplified sequence (NBAS) cause an autosomal recessive disorder with a wide range of symptoms affecting liver, skeletal system, and brain, among ...

Chargement des enrichissements...