Cargando…
A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes
Iron‑sulfur clusters (FeSCs) are vital components of a variety of essential proteins, most prominently within mitochondrial respiratory chain complexes I-III; Fe—S assembly and distribution is performed via multi-step pathways. Variants affecting several proteins in these pathways have been describe...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7797929/ https://www.ncbi.nlm.nih.gov/pubmed/33457206 http://dx.doi.org/10.1016/j.ymgmr.2020.100699 |
_version_ | 1783634964903886848 |
---|---|
author | Hershkovitz, Tova Kurolap, Alina Tal, Galit Paperna, Tamar Mory, Adi Staples, Jeffrey Brigatti, Karlla W. Gonzaga-Jauregui, Claudia Dumin, Elena Saada, Ann Mandel, Hanna Baris Feldman, Hagit |
author_facet | Hershkovitz, Tova Kurolap, Alina Tal, Galit Paperna, Tamar Mory, Adi Staples, Jeffrey Brigatti, Karlla W. Gonzaga-Jauregui, Claudia Dumin, Elena Saada, Ann Mandel, Hanna Baris Feldman, Hagit |
author_sort | Hershkovitz, Tova |
collection | PubMed |
description | Iron‑sulfur clusters (FeSCs) are vital components of a variety of essential proteins, most prominently within mitochondrial respiratory chain complexes I-III; Fe—S assembly and distribution is performed via multi-step pathways. Variants affecting several proteins in these pathways have been described in genetic disorders, including severe mitochondrial disease. Here we describe a Christian Arab kindred with two infants that died due to mitochondrial disorder involving Fe—S containing respiratory chain complexes and a third sibling who survived the initial crisis. A homozygous missense variant in NFS1: c.215G>A; p.Arg72Gln was detected by whole exome sequencing. The NFS1 gene encodes a cysteine desulfurase, which, in complex with ISD11 and ACP, initiates the first step of Fe—S formation. Arginine at position 72 plays a role in NFS1-ISD11 complex formation; therefore, its substitution with glutamine is expected to affect complex stability and function. Interestingly, this is the only pathogenic variant ever reported in the NFS1 gene, previously described once in an Old Order Mennonite family presenting a similar phenotype with intra-familial variability in patient outcomes. Analysis of datasets from both populations did not show a common haplotype, suggesting this variant is a recurrent de novo variant. Our report of the second case of NFS1-related mitochondrial disease corroborates the pathogenicity of this recurring variant and implicates it as a hot-spot variant. While the genetic resolution allows for prenatal diagnosis for the family, it also raises critical clinical questions regarding follow-up and possible treatment options of severely affected and healthy homozygous individuals with mitochondrial co-factor therapy or cysteine supplementation. |
format | Online Article Text |
id | pubmed-7797929 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-77979292021-01-15 A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes Hershkovitz, Tova Kurolap, Alina Tal, Galit Paperna, Tamar Mory, Adi Staples, Jeffrey Brigatti, Karlla W. Gonzaga-Jauregui, Claudia Dumin, Elena Saada, Ann Mandel, Hanna Baris Feldman, Hagit Mol Genet Metab Rep Research Paper Iron‑sulfur clusters (FeSCs) are vital components of a variety of essential proteins, most prominently within mitochondrial respiratory chain complexes I-III; Fe—S assembly and distribution is performed via multi-step pathways. Variants affecting several proteins in these pathways have been described in genetic disorders, including severe mitochondrial disease. Here we describe a Christian Arab kindred with two infants that died due to mitochondrial disorder involving Fe—S containing respiratory chain complexes and a third sibling who survived the initial crisis. A homozygous missense variant in NFS1: c.215G>A; p.Arg72Gln was detected by whole exome sequencing. The NFS1 gene encodes a cysteine desulfurase, which, in complex with ISD11 and ACP, initiates the first step of Fe—S formation. Arginine at position 72 plays a role in NFS1-ISD11 complex formation; therefore, its substitution with glutamine is expected to affect complex stability and function. Interestingly, this is the only pathogenic variant ever reported in the NFS1 gene, previously described once in an Old Order Mennonite family presenting a similar phenotype with intra-familial variability in patient outcomes. Analysis of datasets from both populations did not show a common haplotype, suggesting this variant is a recurrent de novo variant. Our report of the second case of NFS1-related mitochondrial disease corroborates the pathogenicity of this recurring variant and implicates it as a hot-spot variant. While the genetic resolution allows for prenatal diagnosis for the family, it also raises critical clinical questions regarding follow-up and possible treatment options of severely affected and healthy homozygous individuals with mitochondrial co-factor therapy or cysteine supplementation. Elsevier 2020-12-30 /pmc/articles/PMC7797929/ /pubmed/33457206 http://dx.doi.org/10.1016/j.ymgmr.2020.100699 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Research Paper Hershkovitz, Tova Kurolap, Alina Tal, Galit Paperna, Tamar Mory, Adi Staples, Jeffrey Brigatti, Karlla W. Gonzaga-Jauregui, Claudia Dumin, Elena Saada, Ann Mandel, Hanna Baris Feldman, Hagit A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
title | A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
title_full | A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
title_fullStr | A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
title_full_unstemmed | A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
title_short | A recurring NFS1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
title_sort | recurring nfs1 pathogenic variant causes a mitochondrial disorder with variable intra-familial patient outcomes |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7797929/ https://www.ncbi.nlm.nih.gov/pubmed/33457206 http://dx.doi.org/10.1016/j.ymgmr.2020.100699 |
work_keys_str_mv | AT hershkovitztova arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT kurolapalina arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT talgalit arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT papernatamar arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT moryadi arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT staplesjeffrey arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT brigattikarllaw arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT gonzagajaureguiclaudia arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT duminelena arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT saadaann arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT mandelhanna arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT barisfeldmanhagit arecurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT hershkovitztova recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT kurolapalina recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT talgalit recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT papernatamar recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT moryadi recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT staplesjeffrey recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT brigattikarllaw recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT gonzagajaureguiclaudia recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT duminelena recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT saadaann recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT mandelhanna recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes AT barisfeldmanhagit recurringnfs1pathogenicvariantcausesamitochondrialdisorderwithvariableintrafamilialpatientoutcomes |