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Bi-allelic KARS1 pathogenic variants affecting functions of cytosolic and mitochondrial isoforms are associated with a progressive and multisystem disease

Authors :
Paola Goffrini
Felice D'Arco
Enrico Baruffini
Adeline Vanderver
Tamison Jewett
Enrico Bertini
Anya Revah-Politi
Eirik Bratland
Vandana Shashi
Alessandra D'Amico
Camilla Ceccatelli Berti
Vimla Aggarwal
Silvia Maitz
Kwame Anyane-Yeboa
Tara H. Stamper
Francesco Canonico
Gabriel S Kupchik
Andreas Benneche
César Augusto Pinheiro Ferreira Alves
Daniela Longo
Gerarda Cappuccio
Annalaura Torella
Vincenzo Nigro
Nicola Brunetti-Pierri
Marjo S van der Knaap
Siren Berland
Jennifer A. Sullivan
Pediatrics
Amsterdam Neuroscience - Cellular & Molecular Mechanisms
Functional Genomics
Cappuccio, G.
Ceccatelli Berti, C.
Baruffini, E.
Sullivan, J.
Shashi, V.
Jewett, T.
Stamper, T.
Maitz, S.
Canonico, F.
Revah-Politi, A.
Kupchik, G. S.
Anyane-Yeboa, K.
Aggarwal, V.
Benneche, A.
Bratland, E.
Berland, S.
D'Arco, F.
Alves, C. A.
Vanderver, A.
Longo, D.
Bertini, E.
Torella, A.
Nigro, V.
D'Amico, A.
van der Knaap, M. S.
Goffrini, P.
Brunetti Pierri, N.
Brunetti-Pierri, N.
Source :
Human Mutation, 42(6), 745-761. Wiley-Liss Inc., Telethon Undiagnosed Diseases Program 2021, ' Bi-allelic KARS1 pathogenic variants affecting functions of cytosolic and mitochondrial isoforms are associated with a progressive and multisystem disease ', Human Mutation, vol. 42, no. 6, pp. 745-761 . https://doi.org/10.1002/humu.24210, Web of Science, Human Mutation
Publication Year :
2021

Abstract

KARS1 encodes a lysyl-transfer RNA synthetase (LysRS) that links lysine to its cognate tRNA. Two different KARS1 isoforms exert functional effects in cytosol and mitochondria. Bi-allelic pathogenic variants in KARS1 have been associated to sensorineural hearing and visual loss, neuropathy, seizures, and leukodystrophy. We report the clinical, biochemical and neuroradiological features of nine individuals with KARS1-related disorder carrying 12 different variants with nine of them being novel. The consequences of these variants on the cytosol and/or mitochondrial LysRS were functionally validated in yeast mutants. Most cases presented with severe neurological features including congenital and progressive microcephaly, seizures, developmental delay/intellectual disability, and cerebral atrophy. Oculo-motor dysfunction and immuno-hematological problems were present in six and three cases, respectively. A yeast growth defect of variable severity was detected for most variants on both cytosolic and mitochondrial isoforms. The detrimental effects of two variants on yeast growth were partially rescued by lysine supplementation. Congenital progressive microcephaly, oculo-motor dysfunction and immuno-hematological problems are emerging phenotypes in KARS1-related disorders. The data in yeast emphasize the role of both mitochondrial and cytosolic isoforms in the pathogenesis of KARS1-related disorder and supports the therapeutic potential of lysine supplementation at least in a subset of patients. This article is protected by copyright. All rights reserved.

Details

Language :
English
ISSN :
10597794
Database :
OpenAIRE
Journal :
Human Mutation, 42(6), 745-761. Wiley-Liss Inc., Telethon Undiagnosed Diseases Program 2021, ' Bi-allelic KARS1 pathogenic variants affecting functions of cytosolic and mitochondrial isoforms are associated with a progressive and multisystem disease ', Human Mutation, vol. 42, no. 6, pp. 745-761 . https://doi.org/10.1002/humu.24210, Web of Science, Human Mutation
Accession number :
edsair.doi.dedup.....882282390879396ca62daaccc96a0201