Department of Microbiology and Immunology, Cornell Institute of Host-Microbe Interaction and Disease, Cornell Center for Immunology, Cornell University, Ithaca, NY, United States.
Department of Pathobiological Sciences, School of Veterinary Medicine, Louisiana State University, Baton Rouge, LA, United States.
Front Immunol. 2023 Mar 20;14:1128626. doi: 10.3389/fimmu.2023.1128626. eCollection 2023.
One of the most proliferative periods for T cells occurs during their development in the thymus. Increased DNA replication can result in increased DNA mutations in the nuclear genome, but also in mitochondrial genomes. A high frequency of mitochondrial DNA mutations can lead to abnormal mitochondrial function and have negative implications on human health. Furthermore, aging is accompanied by an increase in such mutations through oxidative damage and replication errors. Increased mitochondrial DNA mutations cause loss of mitochondrial protein function, and decrease energy production, substrates, and metabolites. Here we have evaluated the effect of increased mitochondrial DNA mutations on T cell development in the thymus. Using mice carrying a mutant mitochondrial DNA polymerase γ (PolG) that causes increased mitochondrial DNA mutations, we show that high fidelity replication of mitochondrial DNA is pivotal for proper T cell development. Reducing the fidelity of mitochondrial DNA replication results in a premature age-dependent reduction in the total number of CD4/CD8 double negative and double positive thymocytes. Analysis of mitochondrial density in thymocyte subpopulations suggests that this may be due to reduced proliferation in specific double negative stages. Taken together, this work suggests that T cell development is regulated by the ability of mitochondria to faithfully replicate their DNA.
T 细胞最具增殖性的时期之一发生在其在胸腺中的发育过程中。DNA 复制的增加可能导致核基因组中的 DNA 突变增加,也可能导致线粒体基因组中的 DNA 突变增加。线粒体 DNA 突变的高频率可导致线粒体功能异常,并对人类健康产生负面影响。此外,随着年龄的增长,氧化损伤和复制错误会导致此类突变的增加。增加的线粒体 DNA 突变导致线粒体蛋白功能丧失,并减少能量产生、底物和代谢物。在这里,我们评估了增加的线粒体 DNA 突变对胸腺中 T 细胞发育的影响。我们使用携带突变的线粒体 DNA 聚合酶 γ(PolG)的小鼠,该突变导致线粒体 DNA 突变增加,结果表明,线粒体 DNA 的高保真复制对于正常的 T 细胞发育至关重要。降低线粒体 DNA 复制的保真度会导致依赖年龄的 CD4/CD8 双阴性和双阳性胸腺细胞总数过早减少。对胸腺细胞亚群中线粒体密度的分析表明,这可能是由于特定的双阴性阶段增殖减少所致。总之,这项工作表明,T 细胞的发育受到线粒体准确复制其 DNA 的能力的调控。