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线粒体DNA同义变异的细胞类型特异性纯化选择

Cell type-specific purifying selection of synonymous mitochondrial DNA variation.

作者信息

Lareau Caleb A, Maschmeyer Patrick, Yin Yajie, Gutierrez Jacob C, Dhindsa Ryan S, Gribling-Burrer Anne-Sophie, Zielinski Sebastian, Hsieh Yu-Hsin, Nitsch Lena, Dimitrova Veronika, Nalbant Benan, Buquicchio Frank A, Abay Tsion, Stickels Robert R, Ulirsch Jacob C, Yan Patrick, Wang Fangyi, Miao Zhuang, Sandor Katalin, Daniel Bence, Liu Vincent, Mendez Paul L, Knaus Petra, Meyer Manpreet, Greenleaf William J, Kundaje Anshul, Smyth Redmond P, Munschauer Mathias, Ludwig Leif S, Satpathy Ansuman T

机构信息

Computational and Systems Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY 10065.

Department of Pathology, Stanford University, Stanford, CA 94305.

出版信息

Proc Natl Acad Sci U S A. 2025 Jul 29;122(30):e2505704122. doi: 10.1073/pnas.2505704122. Epub 2025 Jul 24.

Abstract

While somatic variants are well-characterized drivers of tumor evolution, their influence on cellular fitness in nonmalignant contexts remains understudied. We identified a mosaic synonymous variant (m.7076A > G) in the mitochondrial DNA (mtDNA)-encoded cytochrome c-oxidase subunit 1 (MT-CO1, p.Gly391=), present at homoplasmy in 47% of immune cells from a healthy donor. Single-cell multiomics revealed strong, lineage-specific selection against the m.7076G allele in CD8 effector memory T cells, but not other T cell subsets, mirroring patterns of purifying selection of pathogenic mtDNA alleles. The limited anticodon diversity of mitochondrial tRNAs forces m.7076G translation to rely on wobble pairing, unlike the Watson-Crick-Franklin pairing used for m.7076A. Mitochondrial ribosome profiling confirmed stalled translation of the m.7076G allele. Functional analyses demonstrated that the elevated translational and metabolic demands of short-lived effector T cells (SLECs) amplify dependence on MT-CO1, driving this selective pressure. These findings suggest that synonymous variants can alter codon syntax, impacting mitochondrial physiology in a cell type-specific manner.

摘要

虽然体细胞变异是肿瘤进化的特征明确的驱动因素,但其在非恶性环境中对细胞适应性的影响仍未得到充分研究。我们在一名健康供体47%的免疫细胞中发现了线粒体DNA(mtDNA)编码的细胞色素c氧化酶亚基1(MT-CO1,p.Gly391=)中的一个镶嵌同义变异(m.7076A > G),该变异以同质性存在。单细胞多组学揭示了在CD8效应记忆T细胞中对m.7076G等位基因存在强烈的、谱系特异性选择,而在其他T细胞亚群中则没有,这与对致病性mtDNA等位基因的纯化选择模式相似。线粒体tRNA有限的反密码子多样性迫使m.7076G的翻译依赖于摆动配对,这与m.7076A所使用的沃森-克里克-富兰克林配对不同。线粒体核糖体分析证实了m.7076G等位基因的翻译停滞。功能分析表明,短命效应T细胞(SLEC)升高的翻译和代谢需求放大了对MT-CO1的依赖性,从而产生了这种选择压力。这些发现表明同义变异可以改变密码子语法,以细胞类型特异性方式影响线粒体生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ac8/12318227/7f5790bd0166/pnas.2505704122fig01.jpg

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