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Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases

Background: Mitochondrial diseases are the most common group of inherited metabolic disorders, causing difficulties in definite diagnosis due to clinical and genetic heterogeneity. Clinical components are predominantly associated with pathogenic variants shown in nuclear or mitochondrial genomes tha...

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Autores principales: Gedikbasi, Asuman, Toksoy, Guven, Karaca, Meryem, Gulec, Cagri, Balci, Mehmet Cihan, Gunes, Dilek, Gunes, Seda, Aslanger, Ayca Dilruba, Unverengil, Gokcen, Karaman, Birsen, Basaran, Seher, Demirkol, Mubeccel, Gokcay, Gulden Fatma, Uyguner, Zehra Oya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10292751/
https://www.ncbi.nlm.nih.gov/pubmed/37377599
http://dx.doi.org/10.3389/fgene.2023.1191159
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author Gedikbasi, Asuman
Toksoy, Guven
Karaca, Meryem
Gulec, Cagri
Balci, Mehmet Cihan
Gunes, Dilek
Gunes, Seda
Aslanger, Ayca Dilruba
Unverengil, Gokcen
Karaman, Birsen
Basaran, Seher
Demirkol, Mubeccel
Gokcay, Gulden Fatma
Uyguner, Zehra Oya
author_facet Gedikbasi, Asuman
Toksoy, Guven
Karaca, Meryem
Gulec, Cagri
Balci, Mehmet Cihan
Gunes, Dilek
Gunes, Seda
Aslanger, Ayca Dilruba
Unverengil, Gokcen
Karaman, Birsen
Basaran, Seher
Demirkol, Mubeccel
Gokcay, Gulden Fatma
Uyguner, Zehra Oya
author_sort Gedikbasi, Asuman
collection PubMed
description Background: Mitochondrial diseases are the most common group of inherited metabolic disorders, causing difficulties in definite diagnosis due to clinical and genetic heterogeneity. Clinical components are predominantly associated with pathogenic variants shown in nuclear or mitochondrial genomes that affect vital respiratory chain function. The development of high-throughput sequencing technologies has accelerated the elucidation of the genetic etiology of many genetic diseases that previously remained undiagnosed. Methods: Thirty affected patients from 24 unrelated families with clinical, radiological, biochemical, and histopathological evaluations considered for mitochondrial diseases were investigated. DNA isolated from the peripheral blood samples of probands was sequenced for nuclear exome and mitochondrial DNA (mtDNA) analyses. MtDNA sequencing was also performed from the muscle biopsy material in one patient. For segregation, Sanger sequencing is performed for pathogenic alterations in five other affected family members and healthy parents. Results: Exome sequencing revealed 14 different pathogenic variants in nine genes encoding mitochondrial function peptides (AARS2, EARS2, ECHS1, FBXL4, MICOS13, NDUFAF6, OXCT1, POLG, and TK2) in 12 patients from nine families and four variants in genes encoding important for muscle structure (CAPN3, DYSF, and TCAP) in six patients from four families. Three probands carried pathogenic mtDNA variations in two genes (MT-ATP6 and MT-TL1). Nine variants in five genes are reported for the first time with disease association: (AARS2: c.277C>T/p.(R93*), c.845C>G/p.(S282C); EARS2: c.319C>T/p.(R107C), c.1283delC/p.(P428Lfs*); ECHS1: c.161G>A/p.(R54His); c.202G>A/p.(E68Lys); NDUFAF6: c.479delA/p.(N162Ifs*27); and OXCT1: c.1370C>T/p.(T457I), c.1173-139G>T/p.(?). Conclusion: Bi-genomic DNA sequencing clarified genetic etiology in 67% (16/24) of the families. Diagnostic utility by mtDNA sequencing in 13% (3/24) and exome sequencing in 54% (13/24) of the families prioritized searching for nuclear genome pathologies for the first-tier test. Weakness and muscle wasting observed in 17% (4/24) of the families underlined that limb-girdle muscular dystrophy, similar to mitochondrial myopathy, is an essential point for differential diagnosis. The correct diagnosis is crucial for comprehensive genetic counseling of families. Also, it contributes to making treatment-helpful referrals, such as ensuring early access to medication for patients with mutations in the TK2 gene.
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spelling pubmed-102927512023-06-27 Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases Gedikbasi, Asuman Toksoy, Guven Karaca, Meryem Gulec, Cagri Balci, Mehmet Cihan Gunes, Dilek Gunes, Seda Aslanger, Ayca Dilruba Unverengil, Gokcen Karaman, Birsen Basaran, Seher Demirkol, Mubeccel Gokcay, Gulden Fatma Uyguner, Zehra Oya Front Genet Genetics Background: Mitochondrial diseases are the most common group of inherited metabolic disorders, causing difficulties in definite diagnosis due to clinical and genetic heterogeneity. Clinical components are predominantly associated with pathogenic variants shown in nuclear or mitochondrial genomes that affect vital respiratory chain function. The development of high-throughput sequencing technologies has accelerated the elucidation of the genetic etiology of many genetic diseases that previously remained undiagnosed. Methods: Thirty affected patients from 24 unrelated families with clinical, radiological, biochemical, and histopathological evaluations considered for mitochondrial diseases were investigated. DNA isolated from the peripheral blood samples of probands was sequenced for nuclear exome and mitochondrial DNA (mtDNA) analyses. MtDNA sequencing was also performed from the muscle biopsy material in one patient. For segregation, Sanger sequencing is performed for pathogenic alterations in five other affected family members and healthy parents. Results: Exome sequencing revealed 14 different pathogenic variants in nine genes encoding mitochondrial function peptides (AARS2, EARS2, ECHS1, FBXL4, MICOS13, NDUFAF6, OXCT1, POLG, and TK2) in 12 patients from nine families and four variants in genes encoding important for muscle structure (CAPN3, DYSF, and TCAP) in six patients from four families. Three probands carried pathogenic mtDNA variations in two genes (MT-ATP6 and MT-TL1). Nine variants in five genes are reported for the first time with disease association: (AARS2: c.277C>T/p.(R93*), c.845C>G/p.(S282C); EARS2: c.319C>T/p.(R107C), c.1283delC/p.(P428Lfs*); ECHS1: c.161G>A/p.(R54His); c.202G>A/p.(E68Lys); NDUFAF6: c.479delA/p.(N162Ifs*27); and OXCT1: c.1370C>T/p.(T457I), c.1173-139G>T/p.(?). Conclusion: Bi-genomic DNA sequencing clarified genetic etiology in 67% (16/24) of the families. Diagnostic utility by mtDNA sequencing in 13% (3/24) and exome sequencing in 54% (13/24) of the families prioritized searching for nuclear genome pathologies for the first-tier test. Weakness and muscle wasting observed in 17% (4/24) of the families underlined that limb-girdle muscular dystrophy, similar to mitochondrial myopathy, is an essential point for differential diagnosis. The correct diagnosis is crucial for comprehensive genetic counseling of families. Also, it contributes to making treatment-helpful referrals, such as ensuring early access to medication for patients with mutations in the TK2 gene. Frontiers Media S.A. 2023-06-12 /pmc/articles/PMC10292751/ /pubmed/37377599 http://dx.doi.org/10.3389/fgene.2023.1191159 Text en Copyright © 2023 Gedikbasi, Toksoy, Karaca, Gulec, Balci, Gunes, Gunes, Aslanger, Unverengil, Karaman, Basaran, Demirkol, Gokcay and Uyguner. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Gedikbasi, Asuman
Toksoy, Guven
Karaca, Meryem
Gulec, Cagri
Balci, Mehmet Cihan
Gunes, Dilek
Gunes, Seda
Aslanger, Ayca Dilruba
Unverengil, Gokcen
Karaman, Birsen
Basaran, Seher
Demirkol, Mubeccel
Gokcay, Gulden Fatma
Uyguner, Zehra Oya
Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases
title Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases
title_full Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases
title_fullStr Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases
title_full_unstemmed Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases
title_short Clinical and bi-genomic DNA findings of patients suspected to have mitochondrial diseases
title_sort clinical and bi-genomic dna findings of patients suspected to have mitochondrial diseases
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10292751/
https://www.ncbi.nlm.nih.gov/pubmed/37377599
http://dx.doi.org/10.3389/fgene.2023.1191159
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