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Hypoxic regulation of telomerase gene expression by transcriptional and post-transcriptional mechanisms

机译:通过转录和转录后机制对端粒酶基因表达的低氧调节

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Basal telomerase activity is dependent on expression of the hTERT and hTR genes and upregulation of telomerase gene expression is associated with tumour development. It is therefore possible that signal transduction pathways involved in tumour development and features of the tumour environment itself may influence telomerase gene regulation. The majority of solid tumours contain regions of hypoxia and it has recently been demonstrated that hypoxia can increase telomerase activity by mechanisms that are still poorly defined. Here, we show that hypoxia induces the transcriptional activity of both hTR and hTERT gene promoters. While endogenous hTR expression is regulated at the transcriptional level, hTERT is subject to regulation by alternative splicing under hypoxic conditions, which involves a switch in the splice pattern in favour of the active variant. Furthermore, analysis of the chromatin landscape of the telomerase promoters reveals dynamic recruitment of a transcriptional complex involving the hypoxia-inducible factor-1 transcription factor, p300, RNA polymerase II and TFIIB, to both promoters during hypoxia, which traffics along and remains associated with the hTERT gene as transcription proceeds. These studies show that hTERT and hTR are subject to similar controls under hypoxia and highlight the rapid and dynamic regulation of the telomerase genes in vivo.
机译:基础端粒酶活性取决于hTERT和hTR基因的表达,端粒酶基因表达的上调与肿瘤的发展有关。因此,涉及肿瘤发展和肿瘤环境本身特征的信号转导途径可能会影响端粒酶基因调控。大多数实体瘤都包含缺氧区域,最近已证明缺氧可以通过仍不清楚的机制增加端粒酶活性。在这里,我们表明缺氧诱导hTR和hTERT基因启动子的转录活性。虽然内源性hTR表达在转录水平上受到调节,但hTERT在缺氧条件下通过选择性剪接受到调节,这涉及在剪接模式中切换以利于活性变体。此外,对端粒酶启动子的染色质分布的分析表明,在缺氧过程中,涉及缺氧诱导因子-1转录因子p300,RNA聚合酶II和TFIIB的转录复合物可动态募集到两个启动子上,并伴随着运输hTERT基因随着转录进行。这些研究表明,hTERT和hTR在缺氧条件下也受到类似的控制,并突出了体内端粒酶基因的快速动态调节。

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