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Regulation of human and mouse telomerase genes by genomic contexts and transcription factors during embryonic stem cell differentiation

机译:胚胎干细胞分化过程中基因组和转录因子对人和小鼠端粒酶基因的调控

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Differential regulation of telomerase reverse transcriptase (TERT) genes contribute to distinct aging and tumorigenic processes in humans and mice. To study TERT regulation, we generated mouse embryonic stem cell (ESC) lines containing single-copy bacterial artificial chromosome (BAC) reporters, covering hTERT and mTERT genes and their neighboring loci, via recombinase-mediated BAC targeting. ESC lines with chimeric BACs, in which two TERT promoters were swapped, were also generated. Using these chromatinized BACs, we showed that hTERT silencing during differentiation to embryoid bodies (EBs) and to fibroblast-like cells was driven by the human-specific genomic context and accompanied by increases of repressive epigenetic marks, H3K9me3 and H3K27me3, near its promoter. Conversely, the mouse genomic context did not repress TERT transcription until late during differentiation. The hTERT promoter was more active than its mouse counterpart when compared in the same genomic contexts. Mutations of E-box and E2F consensus sites at the promoter had little effect on hTERT transcription in ESCs. However, the mutant promoters were rapidly silenced upon EB differentiation, indicating that transcription factors (TFs) bound to these sites were critical in maintaining hTERT transcription during differentiation. Together, our study revealed a dynamic hTERT regulation by chromatin environment and promoter-bound TFs during ESC differentiation.
机译:端粒酶逆转录酶(TERT)基因的差异调节导致人类和小鼠的明显衰老和致瘤过程。为了研究TERT调控,我们通过重组酶介导的BAC靶向产生了包含单拷贝细菌人工染色体(BAC)报告基因的小鼠胚胎干细胞(ESC)系,涵盖了hTERT和mTERT基因及其邻近的基因座。还产生了带有嵌合BAC的ESC系,其中交换了两个TERT启动子。使用这些染色的BAC,我们显示了hTERT在向胚状体(EBs)和成纤维细胞样细胞分化过程中的沉默受到人类特异性基因组背景的驱动,并伴随着其启动子附近的表观遗传标记H3K9me3和H3K27me3的增加。相反,小鼠基因组背景直到分化后期才抑制TERT转录。在相同的基因组环境中进行比较时,hTERT启动子的活性高于其小鼠对应物。启动子上的E-box和E2F共有位点的突变对ESC中的hTERT转录影响很小。但是,突变启动子在EB分化后迅速沉默,表明与这些位点结合的转录因子(TFs)在分化过程中维持hTERT转录至关重要。在一起,我们的研究表明在胚胎干细胞分化过程中染色质环境和启动子结合的TFs动态调节hTERT。

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