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Secondary structure and mutational analysis of the Mason-Pfizer monkey virus RNA constitutive transport element.

机译:Mason-Pfizer猴病毒RNA组成型转运元件的二级结构和突变分析。

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摘要

The Mason-Pfizer monkey virus (MPMV) genome contains a cis-acting element that serves to facilitate nucleocytoplasmic export of intron-containing RNA. This element, known as the constitutive transport element (CTE), has been mapped to a 154-nt region close to the 3' end of the MPMV genome. The CTE contains a degenerate direct repeat of approximately 70 nt. We have probed the secondary structure of the CTE using double-strand- and single-strand-specific ribonucleases and chemical modification agents. A mutational analysis was also performed to confirm critical features of the CTE structure, as well as to identify regions that contain sequence-specific information required for function. Our results indicate that the CTE forms a long stem structure that contains a 9-nt terminal hairpin loop as well as two identical 16-nt inner loops. The inner loop sequences are rotated 180 degrees relative to each other within the structure. The mutational analysis shows that primary sequences in the loop regions are important for function, suggesting that they may contain binding sites for cellular proteins involved in RNA export. Interestingly, sequences with significant homology to the inner loop regions are found in the genomes of spumaviruses and mouse intracisternal A particles.
机译:Mason-Pfizer猴病毒(MPMV)基因组包含一个顺式作用元件,可促进含内含子的RNA的胞质输出。该成分被称为组成性转运元件(CTE),已被定位到靠近MPMV基因组3'端的154-nt区域。 CTE包含约70 nt的简并直接重复序列。我们已经使用双链和单链特异性核糖核酸酶和化学修饰剂探究了CTE的二级结构。还进行了突变分析,以确认CTE结构的关键特征,并确定包含功能所需序列特异性信息的区域。我们的结果表明,CTE形成了一个长茎结构,其中包含一个9 nt末端发夹环以及两个相同的16 nt内部环。内部循环序列在结构内相对于彼此旋转180度。突变分析表明,环区中的一级序列对于功能很重要,这表明它们可能包含与RNA输出有关的细胞蛋白的结合位点。有趣的是,在spumaviruses和小鼠脑池内A颗粒的基因组中发现了与内环区具有高度同源性的序列。

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