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首页> 外文期刊>Journal of Cell Science >Telomerase-mediated telomere elongation from human blastocysts to embryonic stem cells
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Telomerase-mediated telomere elongation from human blastocysts to embryonic stem cells

机译:端粒酶介导的从人胚泡到胚胎干细胞的端粒延长

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High telomerase activity is a characteristic of human embryonic stem cells (hESCs), however, the regulation and maintenance of correct telomere length in hESCs is unclear. In this study we investigated telomere elongation in hESCs in vitro and found that telomeres lengthened from their derivation in blastocysts through early expansion, but stabilized at later passages. We report that the core unit of telomerase, hTERT, was highly expressed in hESCs in blastocysts and throughout long-term culture; furthermore, this was regulated in a Wnt-β-catenin-signaling-dependent manner. Our observations that the alternative lengthening of telomeres (ALT) pathway was suppressed in hESCs and that hTERT knockdown partially inhibited telomere elongation, demonstrated that high telomerase activity was required for telomere elongation. We observed that chromatin modification through trimethylation of H3K9 and H4K20 at telomeric regions decreased during early culture. This was concurrent with telomere elongation, suggesting that epigenetic regulation of telomeric chromatin may influence telomerase function. By measuring telomere length in 96 hESC lines, we were able to establish that telomere length remained relatively stable at 12.02 ± 61.01 kb during later passages (15-95). In contrast, telomere length varied in hESCs with genomic instability and hESC-derived teratomas. In summary, we propose that correct, stable telomere length may serve as a potential biomarker for genetically stable hESCs.
机译:高端粒酶活性是人类胚胎干细胞(hESCs)的特征,但是,尚不清楚hESCs中端粒长度正确的调控和维持。在这项研究中,我们研究了hESCs中端粒的延长,发现端粒从它们在胚泡中的衍生开始通过早期扩增而延长,但在以后的传代中稳定下来。我们报道端粒酶的核心单元,hTERT,在胚泡和整个长期培养的hESCs中高度表达。此外,这以Wnt-β-连环蛋白信号传导依赖性方式调节。我们的观察结果表明,在hESC中,端粒(ALT)途径的替代性延长被抑制,而hTERT的敲低部分抑制了端粒的延长,这表明端粒延长需要高端粒酶活性。我们观察到,端粒区域H3K9和H4K20的三甲基化引起的染色质修饰在早期培养过程中降低。这与端粒延长同时发生,表明端粒染色质的表观遗传调控可能影响端粒酶功能。通过测量96 hESC系中的端粒长度,我们能够确定端粒长度在以后的传代过程中相对稳定在12.02±61.01 kb(15-95)。相反,在具有基因组不稳定性和hESC来源的畸胎瘤的hESC中,端粒长度各不相同。总之,我们建议正确,稳定的端粒长度可以作为遗传稳定的hESCs的潜在生物标记。

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