Cargando…

Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia

BACKGROUND: Mitochondria are major cellular sources of reactive oxygen species (ROS) generation which can induce mitochondrial DNA damage and lead to carcinogenesis. The mitochondrial 10398A>G alteration in NADH-dehydrogenase subunit 3 (ND3) can severely impair complex I, a key component of ROS p...

Descripción completa

Detalles Bibliográficos
Autores principales: Mohamed Yusoff, Abdul Aziz, Zulfakhar, Fatin Najwa, Mohd Khair, Siti Zulaikha Nashwa, Wan Abdullah, Wan Salihah, Abdullah, Jafri Malin, Idris, Zamzuri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Brain Tumor Society; The Korean Society for Neuro-Oncology; The Korean Society for Pediatric Neuro-Oncology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5932297/
https://www.ncbi.nlm.nih.gov/pubmed/29717568
http://dx.doi.org/10.14791/btrt.2018.6.e5
_version_ 1783319782328631296
author Mohamed Yusoff, Abdul Aziz
Zulfakhar, Fatin Najwa
Mohd Khair, Siti Zulaikha Nashwa
Wan Abdullah, Wan Salihah
Abdullah, Jafri Malin
Idris, Zamzuri
author_facet Mohamed Yusoff, Abdul Aziz
Zulfakhar, Fatin Najwa
Mohd Khair, Siti Zulaikha Nashwa
Wan Abdullah, Wan Salihah
Abdullah, Jafri Malin
Idris, Zamzuri
author_sort Mohamed Yusoff, Abdul Aziz
collection PubMed
description BACKGROUND: Mitochondria are major cellular sources of reactive oxygen species (ROS) generation which can induce mitochondrial DNA damage and lead to carcinogenesis. The mitochondrial 10398A>G alteration in NADH-dehydrogenase subunit 3 (ND3) can severely impair complex I, a key component of ROS production in the mitochondrial electron transport chain. Alteration in ND3 10398A>G has been reported to be linked with diverse neurodegenerative disorders and cancers. The aim of this study was to find out the association of mitochondrial ND3 10398A>G alteration in brain tumor of Malaysian patients. METHODS: Brain tumor tissues and corresponding blood specimens were obtained from 45 patients. The ND3 10398A>G alteration at target codon 114 was detected using the PCR-RFLP analysis and later was confirmed by DNA sequencing. RESULTS: Twenty-six (57.8%) patients showed ND3 10398A>G mutation in their tumor specimens, in which 26.9% of these mutations were heterozygous mutations. ND3 10398A>G mutation was not significantly correlated with age, gender, and histological tumor grade, however was found more frequently in intra-axial than in extra-axial tumors (62.5% vs. 46.2%, p<0.01). CONCLUSION: For the first time, we have been able to describe the occurrence of ND3 10398A>G mutations in a Malaysian brain tumor population. It can be concluded that mitochondrial ND3 10398A>G alteration is frequently present in brain tumors among Malaysian population and it shows an impact on the intra-axial tumors.
format Online
Article
Text
id pubmed-5932297
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher The Korean Brain Tumor Society; The Korean Society for Neuro-Oncology; The Korean Society for Pediatric Neuro-Oncology
record_format MEDLINE/PubMed
spelling pubmed-59322972018-05-07 Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia Mohamed Yusoff, Abdul Aziz Zulfakhar, Fatin Najwa Mohd Khair, Siti Zulaikha Nashwa Wan Abdullah, Wan Salihah Abdullah, Jafri Malin Idris, Zamzuri Brain Tumor Res Treat Original Article BACKGROUND: Mitochondria are major cellular sources of reactive oxygen species (ROS) generation which can induce mitochondrial DNA damage and lead to carcinogenesis. The mitochondrial 10398A>G alteration in NADH-dehydrogenase subunit 3 (ND3) can severely impair complex I, a key component of ROS production in the mitochondrial electron transport chain. Alteration in ND3 10398A>G has been reported to be linked with diverse neurodegenerative disorders and cancers. The aim of this study was to find out the association of mitochondrial ND3 10398A>G alteration in brain tumor of Malaysian patients. METHODS: Brain tumor tissues and corresponding blood specimens were obtained from 45 patients. The ND3 10398A>G alteration at target codon 114 was detected using the PCR-RFLP analysis and later was confirmed by DNA sequencing. RESULTS: Twenty-six (57.8%) patients showed ND3 10398A>G mutation in their tumor specimens, in which 26.9% of these mutations were heterozygous mutations. ND3 10398A>G mutation was not significantly correlated with age, gender, and histological tumor grade, however was found more frequently in intra-axial than in extra-axial tumors (62.5% vs. 46.2%, p<0.01). CONCLUSION: For the first time, we have been able to describe the occurrence of ND3 10398A>G mutations in a Malaysian brain tumor population. It can be concluded that mitochondrial ND3 10398A>G alteration is frequently present in brain tumors among Malaysian population and it shows an impact on the intra-axial tumors. The Korean Brain Tumor Society; The Korean Society for Neuro-Oncology; The Korean Society for Pediatric Neuro-Oncology 2018-04 2018-04-27 /pmc/articles/PMC5932297/ /pubmed/29717568 http://dx.doi.org/10.14791/btrt.2018.6.e5 Text en Copyright © 2018 The Korean Brain Tumor Society, The Korean Society for Neuro-Oncology, and The Korean Society for Pediatric Neuro-Oncology http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Mohamed Yusoff, Abdul Aziz
Zulfakhar, Fatin Najwa
Mohd Khair, Siti Zulaikha Nashwa
Wan Abdullah, Wan Salihah
Abdullah, Jafri Malin
Idris, Zamzuri
Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia
title Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia
title_full Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia
title_fullStr Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia
title_full_unstemmed Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia
title_short Mitochondrial 10398A>G NADH-Dehydrogenase Subunit 3 of Complex I Is Frequently Altered in Intra-Axial Brain Tumors in Malaysia
title_sort mitochondrial 10398a>g nadh-dehydrogenase subunit 3 of complex i is frequently altered in intra-axial brain tumors in malaysia
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5932297/
https://www.ncbi.nlm.nih.gov/pubmed/29717568
http://dx.doi.org/10.14791/btrt.2018.6.e5
work_keys_str_mv AT mohamedyusoffabdulaziz mitochondrial10398agnadhdehydrogenasesubunit3ofcomplexiisfrequentlyalteredinintraaxialbraintumorsinmalaysia
AT zulfakharfatinnajwa mitochondrial10398agnadhdehydrogenasesubunit3ofcomplexiisfrequentlyalteredinintraaxialbraintumorsinmalaysia
AT mohdkhairsitizulaikhanashwa mitochondrial10398agnadhdehydrogenasesubunit3ofcomplexiisfrequentlyalteredinintraaxialbraintumorsinmalaysia
AT wanabdullahwansalihah mitochondrial10398agnadhdehydrogenasesubunit3ofcomplexiisfrequentlyalteredinintraaxialbraintumorsinmalaysia
AT abdullahjafrimalin mitochondrial10398agnadhdehydrogenasesubunit3ofcomplexiisfrequentlyalteredinintraaxialbraintumorsinmalaysia
AT idriszamzuri mitochondrial10398agnadhdehydrogenasesubunit3ofcomplexiisfrequentlyalteredinintraaxialbraintumorsinmalaysia