首页> 外文期刊>Molecular and Cellular Biology >Small nuclear RNA genes transcribed by either RNA polymerase II or RNA polymerase III in monocot plants share three promoter elements and use a strategy to regulate gene expression different from that used by their dicot plant counterparts.
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Small nuclear RNA genes transcribed by either RNA polymerase II or RNA polymerase III in monocot plants share three promoter elements and use a strategy to regulate gene expression different from that used by their dicot plant counterparts.

机译:由单子叶植物中的RNA聚合酶II或RNA聚合酶III转录的小核RNA基因共有三个启动子元件,并使用一种策略来调节不同于双子叶植物对应基因的基因表达。

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RNA polymerase (Pol) II- and RNA Pol III-transcribed small nuclear RNA (snRNA) genes of dicotyledonous plants contain two essential upstream promoter elements, the USE and TATA. The USE is a highly conserved plant snRNA gene-specific element, and its distance from the -30 TATA box, corresponding to approximately three and four helical DNA turns in Pol III and Pol II genes, respectively, is crucial for determining RNA Pol specificity of transcription. Sequences upstream of the USE play no role in snRNA gene transcription in dicot plants. Here we show that for expression of snRNA genes in maize, a monocotyledonous plant, the USE and TATA elements are essential, but not sufficient, for transcription. Efficient expression of both Pol II- and Pol III-specific snRNA genes in transfected maize protoplasts requires an additional element(s) positioned upstream of the USE. This element, named MSP (for monocot-specific promoter; consensus, RGCCCR), is present in one to three copies in monocot snRNA genes and is interchangeable between Pol II- and Pol III-specific genes. The efficiency of snRNA gene expression in maize protoplast is determined primarily by the strength of the MSP element(s); this contrasts with the situation in protoplasts of a dicot plant, Nicotiana plumbaginifolia, where promoter strength is a function of the quality of the USE element. Interestingly, the organization of monocot Pol III-specific snRNA gene promoters closely resembles those of equivalent vertebrate promoters. The data are discussed in the context of the coevolution of Pol II- and Pol III-specific snRNA gene promoters within many eukaryotic organisms.
机译:双子叶植物的RNA聚合酶(Pol)II和RNA Pol III转录的小核RNA(snRNA)基因包含两个重要的上游启动子元件:USE和TATA。 USE是一种高度保守的植物snRNA基因特异性元件,它与-30 TATA盒的距离分别对应于Pol III和Pol II基因中大约3和4个螺旋DNA匝,对于确定RNA的特异性至关重要。转录。 USE上游的序列在双子叶植物的snRNA基因转录中不起作用。在这里,我们显示了在玉米(单子叶植物)中表达snRNA基因时,USE和TATA元件对于转录是必不可少的,但不足。 Pol II和Pol III特异的snRNA基因在转染的玉米原生质体中的有效表达需要位于USE上游的其他元件。此元素名为MSP(对于单子叶植物特异性启动子;共有,RGCCCR),在单子叶植物snRNA基因中以一到三个拷贝存在,并且在Pol II和Pol III特异性基因之间可以互换。玉米原生质体中snRNA基因表达的效率主要取决于MSP元件的强度。这与双子叶植物Nicotiana plumbaginifolia原生质体中的情况相反,其中启动子强度是USE元素质量的函数。有趣的是,单子叶植物Pol III特异性snRNA基因启动子的组织与等效脊椎动物启动子的组织非常相似。在许多真核生物中Pol II和Pol III特异性snRNA基因启动子共同进化的背景下讨论了这些数据。

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