Literature DB >> 32181591

GARS-related disease in infantile spinal muscular atrophy: Implications for diagnosis and treatment.

Rebecca Markovitz1, Rajarshi Ghosh1, Molly E Kuo2,3, William Hong1,4,5, Jaehyung Lim1,4,5, Saunder Bernes6, Stephanie Manberg6, Kathleen Crosby7, Pranoot Tanpaiboon7, Diana Bharucha-Goebel8,9, Carsten Bonnemann8,9, Carrie A Mohila10,11, Elizabeth Mizerik1,5, Suzanne Woodbury5,12, Weimin Bi1, Timothy Lotze4,5, Anthony Antonellis2,13,14, Rui Xiao1, Lorraine Potocki1,5.   

Abstract

The majority of patients with spinal muscular atrophy (SMA) identified to date harbor a biallelic exonic deletion of SMN1. However, there have been reports of SMA-like disorders that are independent of SMN1, including those due to pathogenic variants in the glycyl-tRNA synthetase gene (GARS1). We report three unrelated patients with de novo variants in GARS1 that are associated with infantile-onset SMA (iSMA). Patients were ascertained during inpatient hospital evaluations for complications of neuropathy. Evaluations were completed as indicated for clinical care and management and informed consent for publication was obtained. One newly identified, disease-associated GARS1 variant, identified in two out of three patients, was analyzed by functional studies in yeast complementation assays. Genomic analyses by exome and/or gene panel and SMN1 copy number analysis of three patients identified two previously undescribed de novo missense variants in GARS1 and excluded SMN1 as the causative gene. Functional studies in yeast revealed that one of the de novo GARS1 variants results in a loss-of-function effect, consistent with other pathogenic GARS1 alleles. In sum, the patients' clinical presentation, assessments of previously identified GARS1 variants and functional assays in yeast suggest that the GARS1 variants described here cause iSMA. GARS1 variants have been previously associated with Charcot-Marie-Tooth disease (CMT2D) and distal SMA type V (dSMAV). Our findings expand the allelic heterogeneity of GARS-associated disease and support that severe early-onset SMA can be caused by variants in this gene. Distinguishing the SMA phenotype caused by SMN1 variants from that due to pathogenic variants in other genes such as GARS1 significantly alters approaches to treatment.
© 2020 Wiley Periodicals, Inc.

Entities:  

Keywords:  CMT; GARS; clinical genetics; hereditary motor and sensory neuropathy; non-SMN1 SMA

Mesh:

Substances:

Year:  2020        PMID: 32181591      PMCID: PMC8297662          DOI: 10.1002/ajmg.a.61544

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.578


  30 in total

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2.  Pathogenic missense variants altering codon 336 of GARS1 lead to divergent dominant phenotypes.

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Review 4.  The Power of Yeast in Modelling Human Nuclear Mutations Associated with Mitochondrial Diseases.

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5.  Infantile-onset CMT2D/dSMA-V in a Chinese family with parental germline mosaicism for a novel mutation in the GARS1 gene.

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