Mitochondrial genome variability and metabolic alterations reveal new biomarkers of resistance in testicular germ cell tumors.

IF 4.6 Q1 ONCOLOGY 癌症耐药(英文) Pub Date : 2024-12-18 eCollection Date: 2024-01-01 DOI:10.20517/cdr.2024.141
Pavlina Kabelikova, Danica Ivovic, Zuzana Sumbalova, Miloslav Karhanek, Lucia Tatayova, Martina Skopkova, Michal Cagalinec, Vladimira Bruderova, Jan Roska, Dana Jurkovicova
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Abstract

Aim: Mutations in the mitochondrial (mt) genome contribute to metabolic dysfunction and their accumulation relates to disease progression and resistance development in cancer cells. This study explores the mutational status of the mt genome of cisplatin-resistant vs. -sensitive testicular germ cell tumor (TGCT) cells and explores its association with their respiration parameters, expression of respiratory genes, and preferences for metabolic pathways to reveal new markers of therapy resistance in TGCTs. Methods: Using Illumina sequencing with Twist Enrichment Panel, the mutations of mt genomes of sensitive 2102EP, H12.1, NTERA-2, T-cam and resistant 2102EP Cis, H12.1 ODM, 1411HP, 1777NRpmet, NTERA-2 Cis and T-cam Cis cell lines were identified. The mt respiration of the cells was assessed using high-resolution respirometry method (O2k-respirometer Oroboros) and the differential expression profiles of mt respiratory genes were determined using RT-qPCR. Associated preferences for metabolic pathways were compared using Glycolysis/OXPHOS assay. Results: In resistant TGCT cells, new mutations in mt genes MT-ND1-6, MT-RNR, MT-CO1-3, MT-ATP6, and MT-CYB were recognized. The respiratory rates of the 1777NRpmet cell line were the highest, while those of the 1411HP line the lowest; rates of the control and all other TGCT cell lines fell between these two lines. The statistically significant differences in gene expression of the respiratory genes were recorded only in NTERA-2 Cis and T-cam Cis cell lines. Sensitive cell lines NTERA-2 and 2102EP preferred oxidative phosphorylation (OXPHOS), while glycolysis was typical for resistant NTERA-2 Cis, 2102EP Cis and 1411HP cell lines. Metastatic 1777NRpmet cells seem to utilize both. An isogenic pair of cell lines H12.1 and H12.1ODM showed the opposite dependence, sensitive H12.1 preferring glycolysis, while resistant H12.1ODM OXPHOS. Conclusion: In summary, our study identified new mutations in mt genes of resistant TGCT cell lines that are associated with different mt respiration parameters, gene expression patterns and preferences for metabolic pathways, providing potential novel molecular biomarkers that distinguish the resistant TGCT phenotype or specify its histological classification.

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线粒体基因组变异和代谢改变揭示了睾丸生殖细胞肿瘤耐药的新生物标志物。
目的:线粒体(mt)基因组突变会导致代谢功能障碍,其积累与癌细胞的疾病进展和抗药性发展有关。本研究探讨了顺铂耐药与敏感睾丸生殖细胞瘤(TGCT)细胞线粒体基因组的突变状态,并探讨了其与呼吸参数、呼吸基因表达和代谢途径偏好的关联,以揭示 TGCT 治疗耐药性的新标记。研究方法利用Illumina测序技术和Twist Enrichment Panel,鉴定了敏感的2102EP、H12.1、NTERA-2、T-cam和耐药的2102EP Cis、H12.1 ODM、1411HP、1777NRpmet、NTERA-2 Cis和T-cam Cis细胞系的mt基因组突变。使用高分辨率呼吸测定法(O2k-respirometer Oroboros)评估了细胞的黑质呼吸,并使用 RT-qPCR 确定了黑质呼吸基因的差异表达谱。使用糖酵解/OXPHOS 检测比较了代谢途径的相关偏好。结果:在抗性 TGCT 细胞中,发现了 MT-ND1-6、MT-RNR、MT-CO1-3、MT-ATP6 和 MT-CYB 等 mt 基因的新突变。1777NRpmet 细胞系的呼吸率最高,而 1411HP 细胞系的呼吸率最低;对照组和所有其他 TGCT 细胞系的呼吸率介于这两个细胞系之间。只有 NTERA-2 顺式细胞系和 T-cam 顺式细胞系的呼吸基因表达有明显的统计学差异。敏感细胞株 NTERA-2 和 2102EP 更倾向于氧化磷酸化(OXPHOS),而耐药细胞株 NTERA-2 Cis、2102EP Cis 和 1411HP 则以糖酵解为典型特征。转移性 1777NRpmet 细胞似乎同时利用这两种方式。H12.1和H12.1ODM这对同源细胞株显示出相反的依赖性,敏感的H12.1更倾向于糖酵解,而耐药的H12.1ODM则是OXPHOS。结论总之,我们的研究发现了耐药 TGCT 细胞系 mt 基因的新突变,这些突变与不同的 mt 呼吸参数、基因表达模式和代谢途径偏好有关,为区分耐药 TGCT 表型或明确其组织学分类提供了潜在的新型分子生物标记物。
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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