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The Proportion of Chromatin Graded between Closed and Open States Determines the Level of Transcripts Derived from Distinct Promoters in the CYP19 Gene

机译:染色质在封闭状态和开放状态之间分级的比例决定了CYP19基因中不同启动子的转录本水平。

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摘要

The human CYP19 gene encodes aromatase, which converts androgens to estrogens. CYP19 mRNA variants are transcribed mainly from three promoters. Quantitative RT-PCR was used to measure the relative amounts of each of the three transcripts and determine the on/off state of the promoters. While some of the promoters were silent, CYP19 mRNA production differed among the other promoters, whose estimated transcription levels were 0.001% to 0.1% of that of the TUBB control gene. To investigate the structural aspects of chromatin that were responsible for this wide range of activity of the CYP19 promoters, we used a fractionation protocol, designated SEVENS, which sequentially separates densely packed nucleosomes from dispersed nucleosomes. The fractional distribution of each inactive promoter showed a similar pattern to that of the repressed reference loci; the inactive regions were distributed toward lower fractions, in which closed chromatin comprising packed nucleosomes was enriched. In contrast, active CYP19 promoters were raised toward upper fractions, including dispersed nucleosomes in open chromatin. Importantly, these active promoters were moderately enriched in the upper fractions as compared to active reference loci, such as the TUBB promoter; the proportion of open chromatin appeared to be positively correlated to the promoter strength. These results, together with ectopic transcription accompanied by an increase in the proportion of open chromatin in cells treated with an H3K27me inhibitor, indicate that CYP19 mRNA could be transcribed from a promoter in which chromatin is shifted toward an open state in the equilibrium between closed and open chromatin.
机译:人CYP19基因编码芳香化酶,可将雄激素转化为雌激素。 CYP19 mRNA变体主要从三个启动子转录。定量RT-PCR用于测量三个转录物各自的相对量,并确定启动子的开启/关闭状态。尽管某些启动子沉默,但其他启动子之间的CYP19 mRNA产生却有所不同,其估计的转录水平是TUBB对照基因的0.001%至0.1%。为了研究负责这种广泛的CYP19启动子活性的染色质的结构方面,我们使用了分馏方案,命名为SEVENS,该方案从密集的核小体中依次分离出密集的核小体。每个失活的启动子的分数分布与抑制的参考基因座显示出相似的模式。非活性区域向较低级分分布,其中封闭的染色质包含堆积的核小体。相反,活性CYP19启动子向较高级分升高,包括在开放染色质中分散的核小体。重要的是,与诸如TUBB启动子之类的活性参考基因座相比,这些活性启动子在上层部分中等富集。开放染色质的比例似乎与启动子强度呈正相关。这些结果,再加上异位转录,伴随用H3K27me抑制剂处理的细胞中开放染色质的比例增加,表明CYP19 mRNA可以从启动子转录,在该启动子中,染色质在闭合和闭合之间达到平衡,向着开放状态转移。开放染色质。

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