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Correction of Down syndrome and Edwards syndrome aneuploidies in human cell cultures

机译:人类细胞培养物中唐氏综合征和爱德华兹综合征非整倍性的校正

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Aneuploidy, an abnormal number of chromosomes, has previously been considered irremediable. Here, we report findings that euploid cells increased among cultured aneuploid cells after exposure to the protein ZSCAN4, encoded by a mammalian-specific gene that is ordinarily expressed in preimplantation embryos and occasionally in stem cells. For footprint-free delivery of ZSCAN4 to cells, we developed ZSCAN4 synthetic mRNAs and Sendai virus vectors that encode human ZSCAN4. Applying the ZSCAN4 biologics to established cultures of mouse embryonic stem cells, most of which had become aneuploid and polyploid, dramatically increased the number of euploid cells within a few days. We then tested the biologics on non-immortalized primary human fibroblast cells derived from four individuals with Down syndrome-the most frequent autosomal trisomy of chromosome 21. Within weeks after ZSCAN4 application to the cells in culture, fluorescent in situ hybridization with a chromosome 21-specific probe detected the emergence of up to 24% of cells with only two rather than three copies. High-resolution G-banded chromosomes further showed up to 40% of cells with a normal karyotype. These findings were confirmed by whole-exome sequencing. Similar results were obtained for cells with the trisomy 18 of Edwards syndrome. Thus a direct, efficient correction of aneuploidy in human fibroblast cells seems possible in vitro using human ZSCAN4.
机译:非整倍体(异常数目的染色体)以前被认为是不可修复的。在这里,我们报告发现,在接触蛋白质ZSCAN4后,培养的非整倍体细胞中的整倍体细胞增加,该蛋白由哺乳动物特异性基因编码,通常在植入前的胚胎中表达,偶尔在干细胞中表达。为了将ZSCAN4无足迹地传递到细胞,我们开发了ZSCAN4合成mRNA和编码人ZSCAN4的仙台病毒载体。将ZSCAN4生物制剂应用于已建立的小鼠胚胎干细胞培养物中,其中大多数已变成非整倍体和多倍体,在几天内大大增加了整倍体细胞的数量。然后,我们对来自四个唐氏综合症(最常见的21号染色体常染色体三体)个体的永生化原代人成纤维细胞进行了生物制剂测试,在将ZSCAN4应用于培养的细胞后数周内,与21-号染色体进行了荧光原位杂交特异性探针检测到最多有24%的细胞出现,只有两个而不是三个副本。高分辨率G带染色体进一步显示多达40%的细胞具有正常核型。这些发现被全外显子组测序证实。爱德华兹综合症的三体性18细胞获得了相似的结果。因此,在体外使用人ZSCAN4可以直接,有效地校正人成纤维细胞中的非整倍性。

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