首页> 美国卫生研究院文献>Nucleic Acids Research >The proximal sequence element (PSE) plays a major role in establishing the RNA polymerase specificity of Drosophila U-snRNA genes.
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The proximal sequence element (PSE) plays a major role in establishing the RNA polymerase specificity of Drosophila U-snRNA genes.

机译:近端序列元件(PSE)在建立果蝇U-snRNA基因的RNA聚合酶特异性中起主要作用。

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摘要

Most small nuclear RNA (snRNA) genes are transcribed by RNA polymerase II, but some (e.g., U6) are transcribed by RNA polymerase III. In vertebrates a TATA box at a fixed distance downstream of the proximal sequence element (PSE) acts as a dominant determinant for recruiting RNA polymerase III to U6 gene promoters. In contrast, vertebrate snRNA genes that contain a PSE but lack a TATA box are transcribed by RNA polymerase II. In plants, transcription of both classes of snRNA genes requires a TATA box in addition to an upstream sequence element (USE), and polymerase specificity is determined by the spacing between these two core promoter elements. In these examples, the PSE (or USE) is interchangeable between the two classes of snRNA genes. Here we report the surprising finding that the Drosophila U1 and U6 PSEs cannot functionally substitute for each other; rather, determination of RNA polymerase specificity is an intrinsic property of the PSE sequence itself. The alteration of two or three base pairs near the 3'-end of the U1 and U6 PSEs was sufficient to switch the RNA polymerase specificity of Drosophila snRNA promoters in vitro. These findings reveal a novel mechanism for achieving RNA polymerase specificity at insect snRNA promoters.
机译:大多数小核RNA(snRNA)基因是通过RNA聚合酶II转录的,但是有些(例如U6)是通过RNA聚合酶III转录的。在脊椎动物中,在近端序列元件(PSE)下游固定距离处的TATA盒充当招募RNA聚合酶III至U6基因启动子的主要决定因素。相反,包含PSE但缺少TATA框的脊椎动物snRNA基因被RNA聚合酶II转录。在植物中,两类snRNA基因的转录除上游序列元件(USE)外还需要TATA盒,聚合酶的特异性由这两个核心启动子元件之间的间隔决定。在这些示例中,PSE(或USE)在两类snRNA基因之间可互换。在这里,我们报告了一个令人惊讶的发现,即果蝇U1和U6 PSE不能在功能上相互替代。相反,RNA聚合酶特异性的确定是PSE序列本身的固有特性。 U1和U6 PSE的3'末端附近的两个或三个碱基对的改变足以在体外改变果蝇snRNA启动子的RNA聚合酶特异性。这些发现揭示了一种在昆虫snRNA启动子上实现RNA聚合酶特异性的新机制。

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