Deciphering the Spectrum of Mitochondrial DNA Mutations in Hepatocellular Carcinoma Using High-Throughput Sequencing.

Q2 Biochemistry, Genetics and Molecular Biology Gene expression Pub Date : 2018-05-18 Epub Date: 2018-02-20 DOI:10.3727/105221618X15185539348147
Chang Yu, Xuefeng Wang, Lifeng Huang, Ying Tong, Lili Chen, Hailong Wu, Qiang Xia, Xiaoni Kong
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引用次数: 9

Abstract

Accumulation of mitochondrial DNA (mtDNA) mutations has been proposed to contribute to the initiation and progression of tumors. By using high-throughput sequencing strategies, we measured 33 specimens including 11 hepatocellular carcinoma (HCC) tissues, 11 corresponding adjacent tissues, and 11 normal liver tissues. We identified 194 single nucleotide variants (SNVs; including insert and deletion) in 33 liver tissues, and 13 somatic novel mutations were detected, including 7 mutations in the coding region. One of the seven somatic mutations (T7609C, 91.09%) is synonymous, which does not change amino acid coding; the other four somatic mutations (T6115C, 65.74%; G8387A, 12.23%; G13121A, 93.08%; and T14180C, 28.22%) could result in amino acid substitutions, potentially leading to mitochondrial dysfunction. Furthermore, two mutations in tRNA might influence amino acid transportation. Consistent with a previous study, we also found that mtDNA copy number was significantly reduced in HCC tissues. Therefore, we established a mitochondrial genome depletion cell line ρ0 and revealed that mtDNA loss reduced proliferation and migration in HCC cells but promoted their resistance to 5-fluorouracil. Our results suggested that somatic mtDNA mutations may cause mitochondrial dysfunction and affect chemoresistance of HCC cells. These new identified somatic mutations may serve as a reference for future studies of cancer mitochondrial genomes.

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利用高通量测序技术破译肝癌线粒体DNA突变谱。
线粒体DNA (mtDNA)突变的积累已被提出有助于肿瘤的发生和发展。通过高通量测序策略,我们测量了33个标本,包括11个肝细胞癌组织,11个相应的邻近组织和11个正常肝组织。我们鉴定出194个单核苷酸变异(snv);在33个肝组织(包括插入和删除)中检测到13个体细胞新突变,其中编码区有7个突变。7个体细胞突变中有1个(T7609C, 91.09%)是同义突变,不改变氨基酸编码;其余4个体细胞突变(T6115C, 65.74%;G8387A, 12.23%;G13121A, 93.08%;T14180C(28.22%)可能导致氨基酸取代,可能导致线粒体功能障碍。此外,tRNA的两个突变可能影响氨基酸运输。与之前的研究一致,我们也发现mtDNA拷贝数在HCC组织中显著减少。因此,我们建立了线粒体基因组缺失细胞系ρ0,发现mtDNA缺失降低了肝癌细胞的增殖和迁移,但促进了肝癌细胞对5-氟尿嘧啶的耐药性。我们的研究结果提示体细胞mtDNA突变可能导致线粒体功能障碍并影响HCC细胞的化疗耐药。这些新发现的体细胞突变可能为未来癌症线粒体基因组的研究提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Gene expression
Gene expression 生物-生物工程与应用微生物
CiteScore
3.80
自引率
0.00%
发文量
3
审稿时长
>12 weeks
期刊介绍: Gene Expression, The Journal of Liver Research will publish articles in all aspects of hepatology. Hepatology, as a research discipline, has seen unprecedented growth especially in the cellular and molecular mechanisms of hepatic health and disease, which continues to have a major impact on understanding liver development, stem cells, carcinogenesis, tissue engineering, injury, repair, regeneration, immunology, metabolism, fibrosis, and transplantation. Continued research and improved understanding in these areas will have a meaningful impact on liver disease prevention, diagnosis, and treatment. The existing journal Gene Expression has expanded its focus to become Gene Expression, The Journal of Liver Research to meet this growing demand. In its revised and expanded scope, the journal will publish high-impact original articles, reviews, short but complete articles, and special articles (editorials, commentaries, opinions) on all aspects of hepatology, making it a unique and invaluable resource for readers interested in this field. The expanded team, led by an Editor-in-Chief who is uniquely qualified and a renowned expert, along with a dynamic and functional editorial board, is determined to make this a premier journal in the field of hepatology.
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