Research Group Reproduction and Genetics, Faculty of Medicine and Pharmacy, Vrije Universiteit Brussel (VUB), Laarbeeklaan 103, Brussels 1090, Belgium; S.I.S.Me.R. Reproductive Medicine Unit, Via Mazzini 12, Bologna 40100, Italy.
Research Group Reproduction and Genetics, Faculty of Medicine and Pharmacy, Vrije Universiteit Brussel (VUB), Laarbeeklaan 103, Brussels 1090, Belgium.
Stem Cell Reports. 2018 Jul 10;11(1):102-114. doi: 10.1016/j.stemcr.2018.05.007. Epub 2018 Jun 14.
In this study, we deep-sequenced the mtDNA of human embryonic and induced pluripotent stem cells (hESCs and hiPSCs) and their source cells and found that the majority of variants pre-existed in the cells used to establish the lines. Early-passage hESCs carried few and low-load heteroplasmic variants, similar to those identified in oocytes and inner cell masses. The number and heteroplasmic loads of these variants increased with prolonged cell culture. The study of 120 individual cells of early- and late-passage hESCs revealed a significant diversity in mtDNA heteroplasmic variants at the single-cell level and that the variants that increase during time in culture are always passenger to the appearance of chromosomal abnormalities. We found that early-passage hiPSCs carry much higher loads of mtDNA variants than hESCs, which single-fibroblast sequencing proved pre-existed in the source cells. Finally, we show that these variants are stably transmitted during short-term differentiation.
在这项研究中,我们对人类胚胎和诱导多能干细胞(hESCs 和 hiPSCs)及其来源细胞的 mtDNA 进行了深度测序,发现大多数变体在建立细胞系时就已经存在了。早期传代的 hESCs 携带的异质体变体数量少、负荷低,与卵母细胞和内细胞团中鉴定到的变体相似。这些变体的数量和异质体负荷随着细胞培养的延长而增加。对早期和晚期传代 hESCs 的 120 个单个细胞的研究揭示了在单细胞水平上 mtDNA 异质体变体的显著多样性,并且在培养过程中增加的变体总是染色体异常出现的过客。我们发现,早期传代的 hiPSCs 携带的 mtDNA 变体负荷远高于 hESCs,单细胞测序证明这些变体在来源细胞中就已经存在。最后,我们表明这些变体在短期分化过程中稳定传递。