Friday, December 4, 2020

LYRM7 mutations cause a multifocal cavitating leukoencephalopathy with distinct MRI appearance.

Dallabona C, Abbink TE, Carrozzo R, Torraco A, Legati A, van Berkel CG, Niceta M, Langella T, Verrigni D, Rizza T, Diodato D, Piemonte F, Lamantea E, Fang M, Zhang J, Martinelli D, Bevivino E, Dionisi-Vici C, Vanderver A, Philip SG, Kurian MA, Verma IC, Bijarnia-Mahay S, Jacinto S, Furtado F, Accorsi P, Ardissone A, Moroni I, Ferrero I, Tartaglia M, Goffrini P, Ghezzi D, van der Knaap MS, Bertini E. LYRM7 mutations cause a multifocal cavitating leukoencephalopathy with distinct MRI appearance. Brain. 2016 Mar;139(Pt 3):782-94. doi: 10.1093/brain/awv392. Epub 2016 Jan 29. Erratum in: Brain. 2018 Nov 1;141(11):e82. PMID: 26912632.

Abstract

This study focused on the molecular characterization of patients with leukoencephalopathy associated with a specific biochemical defect of mitochondrial respiratory chain complex III, and explores the impact of a distinct magnetic resonance imaging pattern of leukoencephalopathy to detect biallelic mutations in LYRM7 in patients with biochemically unclassified leukoencephalopathy. 'Targeted resequencing' of a custom panel including genes coding for mitochondrial proteins was performed in patients with complex III deficiency without a molecular genetic diagnosis. Based on brain magnetic resonance imaging findings in these patients, we selected additional patients from a database of unclassified leukoencephalopathies who were scanned for mutations in LYRM7 by Sanger sequencing. Targeted sequencing revealed homozygous mutations in LYRM7, encoding mitochondrial LYR motif-containing protein 7, in four patients from three unrelated families who had a leukoencephalopathy and complex III deficiency. Two subjects harboured previously unreported variants predicted to be damaging, while two siblings carried an already reported pathogenic homozygous missense change. Sanger sequencing performed in the second cohort of patients revealed LYRM7 mutations in three additional patients, who were selected on the basis of the magnetic resonance imaging pattern. All patients had a consistent magnetic resonance imaging pattern of progressive signal abnormalities with multifocal small cavitations in the periventricular and deep cerebral white matter. Early motor development was delayed in half of the patients. All patients but one presented with subacute neurological deterioration in infancy or childhood, preceded by a febrile infection, and most patients had repeated episodes of subacute encephalopathy with motor regression, irritability and stupor or coma resulting in major handicap or death. LYRM7 protein was strongly reduced in available samples from patients; decreased complex III holocomplex was observed in fibroblasts from a patient carrying a splice site variant; functional studies in yeast confirmed the pathogenicity of two novel mutations. Mutations in LYRM7 were previously found in a single patient with a severe form of infantile onset encephalopathy. We provide new molecular, clinical, and neuroimaging data allowing us to characterize more accurately the molecular spectrum of LYRM7 mutations highlighting that a distinct and recognizable magnetic resonance imaging pattern is related to mutations in this gene. Inter- and intrafamilial variability exists and we observed one patient who was asymptomatic by the age of 6 years.

1 comment:

  1. Natarajan S, Ganesh R, Kannan L, Gunasekeran V, Gopinathan K, Acute
    devastating Multifocal Cavitating Leukoencephalopathy in a 6 year old girl due to missense mutation in LYRM7 gene, Pediatric Neurology (2021), doi: https://doi.org/10.1016/j.pediatrneurol.2020.12.010.

    Introduction

    Mitochondrial complex III ( Ubiquinol: cytochrome c oxidoreductase) is a key component of oxidative phosphorylation system [OXPHOS] involved in transfer of electrons from Coenzyme Q to cytochrome C [ 1 ]. Structurally Complex III is a symmetrical dimer and each monomer is made of 11 structural protein subunits. The assembly of these structural proteins is a complex process and it involves various assembly factors. LYRM7 is an assembly factor that plays an essential role in the terminal steps of complex III assembly [ 2 ]. LYRM7 associated Complex III deficiency usually presents below the age of 2 years with encephalopathy, lactic acidosis and regression. We here with report a homozygous missense mutation in LYRM7 gene in a previously well 6 year old girl who presented with acute encephalopathy and had a devastating course within a week.

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