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II级和III级胶质瘤细胞系中的线粒体DNA突变与显著的线粒体功能障碍和更高的氧化应激相关。

Mitochondrial DNA Mutations in Grade II and III Glioma Cell Lines Are Associated with Significant Mitochondrial Dysfunction and Higher Oxidative Stress.

作者信息

Soon Bee Hong, Abdul Murad Nor Azian, Then Sue-Mian, Abu Bakar Azizi, Fadzil Farizal, Thanabalan Jegan, Mohd Haspani Mohd S, Toh Charng Jeng, Mohd Tamil Azmi, Harun Roslan, Wan Ngah Wan Z, Jamal Rahman

机构信息

UKM Medical Molecular Biology Institute, Universiti Kebangsaan MalaysiaKuala Lumpur, Malaysia.

Division of Neurosurgery, Department of Surgery, Faculty of Medicine, Universiti Kebangsaan MalaysiaKuala Lumpur, Malaysia.

出版信息

Front Physiol. 2017 Apr 21;8:231. doi: 10.3389/fphys.2017.00231. eCollection 2017.

Abstract

The role of mitochondria in tumorigenesis has regained much attention as it could dysregulate cellular energetics, oxidative stress and apoptosis. However, the role of mitochondria in different grade gliomasis still unknown. This study aimed to identify mitochondrial DNA (mtDNA) sequence variations that could possibly affect the mitochondrial functions and also the oxidative stress status. Three different grades of human glioma cell lines and a normal human astrocyte cell line were cultured and tested for oxidative stress biomarkers. Relative oxidative stress level, mitochondria activity, and mitochondrial mass were determined by live cell imaging with confocal laser scanning microscope using CM-HDCFDA, MitoTracker Green, and MitoTracker Orange stains. The entire mitochondrial genome was sequenced using the AffymetrixGeneChip Human Mitochondrial Resequencing Array 2.0. The mitochondrial sequence variations were subjected to phylogenetic haplogroup assessment and pathogenicity of the mutations were predicted using pMUT and PolyPhen2. The Grade II astrocytoma cells showed increased oxidative stress wherea high level of 8-OHdG and oxidative stress indicator were observed. Simultaneously, Grade II and III glioma cells showed relatively poor mitochondria functions and increased number of mutations in the coding region of the mtDNA which could be due to high levels of oxidative stress in these cells. These non-synonymous mtDNA sequence variations were predicted to be pathogenic and could possibly lead to protein dysfunction, leading to oxidative phosphorylation (OXPHOS) impairment, mitochondria dysfunction and could create a vicious cycle of oxidative stress. The Grade IV cells had no missense mutation but preserved intact mitochondria and excellent antioxidant defense mechanisms thus ensuring better survival. In conclusion, Grade II and III glioma cells demonstrated coding region mtDNA mutations, leading to mitochondrial dysfunction and higher oxidative stress.

摘要

线粒体在肿瘤发生中的作用已重新受到广泛关注,因为它可能会破坏细胞能量代谢、氧化应激和细胞凋亡。然而,线粒体在不同分级的胶质瘤中的作用仍不清楚。本研究旨在鉴定可能影响线粒体功能以及氧化应激状态的线粒体DNA(mtDNA)序列变异。培养了三种不同分级的人类胶质瘤细胞系和一种正常人类星形胶质细胞系,并检测了氧化应激生物标志物。使用CM-HDCFDA、MitoTracker Green和MitoTracker Orange染料,通过共聚焦激光扫描显微镜进行活细胞成像,测定相对氧化应激水平、线粒体活性和线粒体质量。使用Affymetrix GeneChip人类线粒体重测序阵列2.0对整个线粒体基因组进行测序。对线粒体序列变异进行系统发育单倍群评估,并使用pMUT和PolyPhen2预测突变的致病性。II级星形细胞瘤细胞显示氧化应激增加,观察到高水平的8-OHdG和氧化应激指标。同时,II级和III级胶质瘤细胞显示线粒体功能相对较差,mtDNA编码区的突变数量增加,这可能是由于这些细胞中的氧化应激水平较高。这些非同义mtDNA序列变异被预测具有致病性,可能导致蛋白质功能障碍,进而导致氧化磷酸化(OXPHOS)受损、线粒体功能障碍,并可能形成氧化应激的恶性循环。IV级细胞没有错义突变,但保留了完整的线粒体和出色的抗氧化防御机制,从而确保更好的生存。总之,II级和III级胶质瘤细胞表现出编码区mtDNA突变,导致线粒体功能障碍和更高的氧化应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad26/5399085/c61e12129e97/fphys-08-00231-g0001.jpg

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