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Stable maintenance of de novo assembled human artificial chromosomes in embryonic stem cells and their differentiated progeny in mice

机译:小鼠胚胎干细胞及其分化后代的从头组装人类人造染色体的稳定维持

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De novo assembled alphoid(tetO)-type human artificial chromosomes (HACs) represent a novel promising generation of high capacity episomal vectors. Their function and persistence, and any adverse effects, in various cell types in live animals, have not, however, been explored. In this study we transferred the alphoid(tetO)-HAC into mouse ES cells and assessed whether the presence of this extra chromosome affects their pluripotent properties. Alphoid(tetO)-HAC-bearing ES cells were indistinguishable from their wild-type counterparts: they retained self-renewal potential and full capacity for multilineage differentiation during mouse development, whereas the HAC itself was mitotically and transcriptionally stable during this process. Our data provide the first example of fully synthetic DNA behaving like a normal chromosome in cells of living animals. It also opens a new perspective into functional genetic studies in laboratory animals as well as stem cell-based regenerative medicine.
机译:从头组装的Alphoid(tetO)型人类人工染色体(HACs)代表了新的有前途的高容量附加型载体的产生。但是,尚未研究它们在活体动物的各种细胞类型中的功能和持久性以及任何不利影响。在这项研究中,我们将alphoid(tetO)-HAC转移到小鼠ES细胞中,并评估了该额外染色体的存在是否会影响其多能性。带有Alphaid(tetO)-HAC的ES细胞与野生型ES细胞没有区别:它们在小鼠发育过程中保留了自我更新的潜力和多系分化的全部能力,而HAC本身在此过程中有丝分裂和转录稳定。我们的数据提供了完全合成的DNA的第一个示例,该DNA在活体动物细胞中的行为类似于正常染色体。它还为实验动物的功能遗传研究以及基于干细胞的再生医学开辟了新的视角。

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