首页 | 本学科首页   官方微博 | 高级检索  
     


Mutations in TIMM50 cause severe mitochondrial dysfunction by targeting key aspects of mitochondrial physiology
Authors:Frederic Tort,Olatz Ugarteburu,Laura Texid  ,Sabrina Gea‐Sorlí  ,Judit Garcí  a‐Villoria,X  nia Ferrer‐Cort  s,   ngela Arias,Leslie Matalonga,Laura Gort,Isidre Ferrer,Mariona Guitart‐Mampel,Gl  ria Garrabou,Frederick M Vaz,Ana Pristoupilova,Marí  a Isabel Esteban Rodrí  guez,Sergi Beltran,Francesc Cardellach,Ronald JA Wanders,Cristina Fillat,Marí  a Teresa Garcí  a‐Silva,Antonia Ribes
Affiliation:Frederic Tort,Olatz Ugarteburu,Laura Texidó,Sabrina Gea‐Sorlí,Judit García‐Villoria,Xènia Ferrer‐Cortès,Ángela Arias,Leslie Matalonga,Laura Gort,Isidre Ferrer,Mariona Guitart‐Mampel,Glòria Garrabou,Frederick M Vaz,Ana Pristoupilova,María Isabel Esteban Rodríguez,Sergi Beltran,Francesc Cardellach,Ronald JA Wanders,Cristina Fillat,María Teresa García‐Silva,Antonia Ribes
Abstract:
3‐Methylglutaconic aciduria (3‐MGA‐uria) syndromes comprise a heterogeneous group of diseases associated with mitochondrial membrane defects. Whole‐exome sequencing identified compound heterozygous mutations in TIMM50 (c.[341 G>A];[805 G>A]) in a boy with West syndrome, optic atrophy, neutropenia, cardiomyopathy, Leigh syndrome, and persistent 3‐MGA‐uria. A comprehensive analysis of the mitochondrial function was performed in fibroblasts of the patient to elucidate the molecular basis of the disease. TIMM50 protein was severely reduced in the patient fibroblasts, regardless of the normal mRNA levels, suggesting that the mutated residues might be important for TIMM50 protein stability. Severe morphological defects and ultrastructural abnormalities with aberrant mitochondrial cristae organization in muscle and fibroblasts were found. The levels of fully assembled OXPHOS complexes and supercomplexes were strongly reduced in fibroblasts from this patient. High‐resolution respirometry demonstrated a significant reduction of the maximum respiratory capacity. A TIMM50‐deficient HEK293T cell line that we generated using CRISPR/Cas9 mimicked the respiratory defect observed in the patient fibroblasts; notably, this defect was rescued by transfection with a plasmid encoding the TIMM50 wild‐type protein. In summary, we demonstrated that TIMM50 deficiency causes a severe mitochondrial dysfunction by targeting key aspects of mitochondrial physiology, such as the maintenance of proper mitochondrial morphology, OXPHOS assembly, and mitochondrial respiratory capacity.
Keywords:3‐methylglutaconic aciduria  mitochondrial disorder  mitochondrial function  mitochondrial morphology  TIMM50
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号