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Clinical presentation and proteomic signature of patients with TANGO2 mutations.

Accepted version
Peer-reviewed

Type

Article

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Authors

Mingirulli, Nadja 
Pyle, Angela 
Hathazi, Denisa 
Alston, Charlotte L 
Kohlschmidt, Nicolai 

Abstract

Transport And Golgi Organization protein 2 (TANGO2) deficiency has recently been identified as a rare metabolic disorder with a distinct clinical and biochemical phenotype of recurrent metabolic crises, hypoglycemia, lactic acidosis, rhabdomyolysis, arrhythmias, and encephalopathy with cognitive decline. We report nine subjects from seven independent families, and we studied muscle histology, respiratory chain enzyme activities in skeletal muscle and proteomic signature of fibroblasts. All nine subjects carried autosomal recessive TANGO2 mutations. Two carried the reported deletion of exons 3 to 9, one homozygous, one heterozygous with a 22q11.21 microdeletion inherited in trans. The other subjects carried three novel homozygous (c.262C>T/p.Arg88*; c.220A>C/p.Thr74Pro; c.380+1G>A), and two further novel heterozygous (c.6_9del/p.Phe6del); c.11-13delTCT/p.Phe5del mutations. Immunoblot analysis detected a significant decrease of TANGO2 protein. Muscle histology showed mild variation of fiber diameter, no ragged-red/cytochrome c oxidase-negative fibers and a defect of multiple respiratory chain enzymes and coenzyme Q10 (CoQ10 ) in two cases, suggesting a possible secondary defect of oxidative phosphorylation. Proteomic analysis in fibroblasts revealed significant changes in components of the mitochondrial fatty acid oxidation, plasma membrane, endoplasmic reticulum-Golgi network and secretory pathways. Clinical presentation of TANGO2 mutations is homogeneous and clinically recognizable. The hemizygous mutations in two patients suggest that some mutations leading to allele loss are difficult to detect. A combined defect of the respiratory chain enzymes and CoQ10 with altered levels of several membrane proteins provides molecular insights into the underlying pathophysiology and may guide rational new therapeutic interventions.

Description

Keywords

TANGO2, fatty acid metabolism, metabolic encephalomyopathy, mitochondrial dysfunction, proteomic analysis, rhabdomyolysis, Brain Diseases, Metabolic, Fatty Acids, Female, Golgi Apparatus, Homozygote, Humans, Infant, Male, Mitochondrial Diseases, Muscle Weakness, Mutation, Oxidative Phosphorylation, Phenotype, Proteomics, Rhabdomyolysis, Whole Genome Sequencing

Journal Title

J Inherit Metab Dis

Conference Name

Journal ISSN

0141-8955
1573-2665

Volume Title

43

Publisher

Wiley

Rights

All rights reserved
Sponsorship
Wellcome Trust (109915_A_15_Z)
Medical Research Council (MR/N025431/2)