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首页> 外文期刊>Molecular and Cellular Biology >Sequences on the 3' side of hexanucleotide AAUAAA affect efficiency of cleavage at the polyadenylation site.
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Sequences on the 3' side of hexanucleotide AAUAAA affect efficiency of cleavage at the polyadenylation site.

机译:六核苷酸AAUAAA 3'侧的序列影响在聚腺苷酸化位点的切割效率。

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The hexanucleotide AAUAAA has been demonstrated to be part of the signal for cleavage and polyadenylation at appropriate sites on eucaryotic mRNA precursors. Since this sequence is not unique to polyadenylation sites, it cannot be the entire signal for the cleavage event. We have extended the definition of the polyadenylation cleavage signal by examining the cleavage event at the site of polyadenylation for the simian virus 40 late mRNAs. Using viable mutants, we have determined that deletion of sequences between 3 and 60 nucleotides on the 3' side of the AAUAAA decreases the efficiency of utilization of the normal polyadenylation site. These data strongly indicate a second major element of the polyadenylation signal. The phenotype of these deletion mutants is an enrichment of viral late transcripts longer than the normally polyadenylated RNA in infected cells. These extended transcripts appear to have an increased half-life due to the less efficient cleavage at the normal polyadenylation site. The enriched levels of extended transcripts in cells infected with the deletion mutants allowed us to examine regions of the late transcript which normally are difficult to study. The extended transcripts have several discrete 3' ends which we have analyzed in relation to polyadenylation and other RNA processing events. Two of these ends map to nucleotides 2794 and 2848, which lie within a region of extensive secondary structure which marks the putative processing signal for the formation of the simian virus 40-associated small RNA. A third specific 3' end reveals a cryptic polyadenylation site at approximately nucleotides 2980 to 2985, more than 300 nucleotides beyond the normal polyadenylation site. This site appears to be utilized only in mutants with debilitated normal sites. The significance of sequences on the 3' side of an AAUAAA for efficient polyadenylation at a specific site is discussed.
机译:已经证明六核苷酸AAUAAA是在真核mRNA前体上的适当位点处裂解和聚腺苷酸化的信号的一部分。由于该序列不是聚腺苷酸化位点所独有的,因此它不可能是切割事件的全部信号。通过检查猿猴病毒40晚期mRNA在聚腺苷酸化位点的裂解事件,我们扩展了聚腺苷酸化裂解信号的定义。使用活的突变体,我们已经确定,AAUAAA 3'侧3至60个核苷酸之间的序列的缺失会降低正常聚腺苷酸化位点的利用效率。这些数据强烈表明了聚腺苷酸化信号的第二主要元素。这些缺失突变体的表型是病毒晚期转录物的富集时间长于受感染细胞中正常聚腺苷酸化的RNA。这些延伸的转录本似乎具有增加的半衰期,这是由于在正常的聚腺苷酸化位点的切割效率较低。在缺失突变体感染的细胞中,丰富的延伸转录本水平使我们能够检查通常难以研究的晚期转录本区域。延伸的转录物具有几个离散的3'末端,我们已经分析了其与聚腺苷酸化和其他RNA加工事件的关系。这些末端中的两个定位于核苷酸2794和2848,其位于广泛的二级结构的区域内,该二级结构标记了与猿猴病毒40相关的小RNA形成的假定加工信号。第三个特定的3'末端在大约2980至2985个核苷酸处揭示了一个秘密的聚腺苷酸化位点,比正常的聚腺苷酸化位点多了300多个核苷酸。该位点似乎仅在具有衰弱的正常位点的突变体中使用。讨论了AAUAAA 3'侧序列对于特定位点有效聚腺苷酸化的意义。

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