FARS1-related disorders caused by bi-allelic mutations in cytosolic phenylalanyl-tRNA synthetase genes: Look beyond the lungs!
Luise A SchuchMaria ForstnerChristina K RappYang LiDesiree E C SmithMarisa I MendesFlorent DelhommelMichael SattlerNagehan EmiralioğluEkim Zihni TaşkiranDiclehan OrhanEmine Nural KiperMeino RohlfsTim JeskeMaximilian HastreiterMichael GerstlauerAlba Torrent VernettaAntonio Moreno-GaldóBirgit KammerFrank BraschSimone Reu-HoferMatthias GriesePublished in: Clinical genetics (2021)
Aminoacyl-tRNA synthetases (ARSs) catalyze the first step of protein biosynthesis (canonical function) and have additional (non-canonical) functions outside of translation. Bi-allelic pathogenic variants in genes encoding ARSs are associated with various recessive mitochondrial and multisystem disorders. We describe here a multisystem clinical phenotype based on bi-allelic mutations in the two genes (FARSA, FARSB) encoding distinct subunits for tetrameric cytosolic phenylalanyl-tRNA synthetase (FARS1). Interstitial lung disease with cholesterol pneumonitis on histology emerged as an early characteristic feature and significantly determined disease burden. Additional clinical characteristics of the patients included neurological findings, liver dysfunction, and connective tissue, muscular and vascular abnormalities. Structural modeling of newly identified missense mutations in the alpha subunit of FARS1, FARSA, showed exclusive mapping to the enzyme's conserved catalytic domain. Patient-derived mutant cells displayed compromised aminoacylation activity in two cases, while remaining unaffected in another. Collectively, these findings expand current knowledge about the human ARS disease spectrum and support a loss of canonical and non-canonical function in FARS1-associated recessive disease.
Keyphrases
- interstitial lung disease
- systemic sclerosis
- genome wide
- intellectual disability
- end stage renal disease
- oxidative stress
- induced apoptosis
- endothelial cells
- rheumatoid arthritis
- healthcare
- newly diagnosed
- ejection fraction
- peritoneal dialysis
- machine learning
- bioinformatics analysis
- high resolution
- idiopathic pulmonary fibrosis
- risk factors
- dna methylation
- gene expression
- copy number
- transcription factor
- binding protein
- protein kinase
- small molecule
- cell death
- wild type
- blood brain barrier
- induced pluripotent stem cells