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首页> 外文期刊>European journal of oral sciences >Imaging RNA polymerase-amelogenin gene complexes with single molecule resolution using atomic force microscopy.
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Imaging RNA polymerase-amelogenin gene complexes with single molecule resolution using atomic force microscopy.

机译:使用原子力显微镜以单分子分辨率成像RNA聚合酶-牙釉蛋白基因复合物。

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摘要

The AMELX gene encoding the enamel matrix protein, amelogenin, is located within (and in the opposite orientation to) the first intron of the ARHGAP6 gene, which encodes a GTPase-activating protein. The orientation of these two genes with respect to each other raises the possibility that they may undergo simultaneous convergent transcription during amelogenesis. The aim of this study was to use atomic force microscopy (AFM) to study a transcriptionally active amelogenin DNA template and to investigate the binding of RNA polymerase to convergently aligned promoters. Images of RNA polymerases stalled on DNA templates were obtained following incubation of the template with RNA polymerases and ribonucleotide triphosphates. A linear DNA template incorporating an intact rat amelogenin cDNA flanked by convergently aligned coliphage T7 and T3 promoters was constructed and shown to be transcriptionally active in vitro. Atomic force microscopy images of transcription complexes revealed globular structures, corresponding to single RNA polymerase molecules bound at specific locations on the DNA templates. These results indicate that AFM allows the visualization of individual RNA polymerases on DNA templates, offering a realistic approach to investigating the concept of convergent transcription of nested genes, which may lead to an understanding of whether the simultaneous expression of AMELX and ARHGAP6 is possible during the formation of tooth enamel.
机译:编码牙釉质基质蛋白amelogenin的AMELX基因位于ARHGAP6基因的第一个内含子中(且方向相反),该内含子编码GTPase激活蛋白。这两个基因相对于彼此的定向增加了它们在牙釉形成过程中可能同时进行会聚转录的可能性。这项研究的目的是使用原子力显微镜(AFM)来研究具有转录活性的amelogenin DNA模板,并研究RNA聚合酶与会聚对齐的启动子的结合。将模板与RNA聚合酶和核糖核苷酸三磷酸一起孵育后,获得了停在DNA模板上的RNA聚合酶的图像。构建了线性DNA模板,该模板包含完整的大鼠牙釉蛋白cDNA,其侧翼是汇聚的对准的噬菌体T7和T3启动子,并在体外具有转录活性。转录复合物的原子力显微镜图像显示球形结构,对应于结合在DNA模板特定位置的单个RNA聚合酶分子。这些结果表明,AFM可以可视化DNA模板上的单个RNA聚合酶,为研究嵌套基因的融合转录概念提供了一种现实的方法,这可能导致人们了解在表达过程中是否可能同时表达AMELX和ARHGAP6。牙釉质的形成。

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