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Short telomeres in ESCs lead to unstable differentiation

机译:ESC中端粒短导致分化不稳定

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Functional telomeres are critical for stem cell proliferation; however, whether they are equally important for the stability of stem cell differentiation is not known. We found that mouse embryonic stem cells (ESCs) with critically short telomeres (Tert-/- ESCs) initiated normal differentiation after leukemia inhibitory factor (LIF) withdrawal but, unlike control ESCs, failed to maintain stable differentiation when LIF was reintroduced to the growth medium. Tert-/- ESCs expressed higher levels of Nanog and, overall, had decreased genomic CpG methylation levels, which included the promoters of Oct4 and Nanog. This unstable differentiation phenotype could be rescued by telomere elongation via reintroduction of Tert, via suppression of Nanog by small hairpin RNA (shRNA) knockdown, or via enforced expression of the de novo DNA methyltransferase 3b. These results demonstrate an unexpected role of functional telomeres in the genome-wide epigenetic regulation of cell differentiation and suggest a potentially important role of telomere instability in cell fate during development or disease.
机译:功能性端粒对于干细胞增殖至关重要。但是,它们对于干细胞分化的稳定性是否同样重要还未知。我们发现具有关键短端粒(Tert-/-ESCs)的小鼠胚胎干细胞(ESCs)在白血病抑制因子(LIF)撤离后开始正常分化,但与对照ESCs不同,当LIF重新引入生长时无法维持稳定的分化中。 Tert //-ESCs表达较高的Nanog水平,总体而言,其基因组CpG甲基化水平降低,其中包括Oct4和Nanog的启动子。这种不稳定的分化表型可以通过重新引入Tert端粒延长,通过小发夹RNA(shRNA)敲除抑制Nanog或通过从头DNA甲基转移酶3b的强制表达来挽救。这些结果表明功能性端粒在细胞分化的全基因组表观遗传调控中具有意想不到的作用,并表明端粒不稳定性在发育或疾病过程中对细胞命运的潜在重要作用。

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