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植物聚腺苷酸化信号中的一个近上游元件由六个以上的核苷酸组成。

A near-upstream element in a plant polyadenylation signal consists of more than six nucleotides.

作者信息

Li Q, Hunt A G

机构信息

Plant Physiology/Biochemistry/Molecular Biology Program, University of Kentucky, Lexington 40546-0091, USA.

出版信息

Plant Mol Biol. 1995 Aug;28(5):927-34. doi: 10.1007/BF00042076.

Abstract

A plant polyadenylation signal consists of three distinct components: a far-upstream element (FUE) that can control utilization of several polyadenylation sites, one or more near-upstream elements (NUEs) that control utilization of each site in a transcription unit, and polyadenylation site (CSs) themselves. NUEs have previously been suggested to be related to the mammalian polyadenylation signal AAUAAA. However, many plant genes do not contain AAUAAA-like motifs near their polyadenylation sites. To better understand the nature of NUEs, we conducted a systematic analysis of the NUE for one polyadenylation site (site 1) in the pea rbcS-E9 gene; this NUE lacks an AAUAAA motif. Linker substitution studies showed that the NUE for site 1 in this gene resides in the sequence AAAUGGAAA. Single-nucleotide substitutions in this domain had modest effects on the functioning of this NUE. Replacement of part of this sequence with the sequence AAUAAA increased the efficiency of this NUE. However, alteration of nucleotides immediately 3' of the AAUAAA reversed this effect. Our results indicate that the NUE for site 1 consists of as many as 9 nucleotides, that these 9 bases do not include an element that is intolerant of single base changes, that the sequence AAUAAA can function as a NUE for site 1, and that sequences flanking AAUAAA can affect the efficiency of functioning as a NUE.

摘要

植物聚腺苷酸化信号由三个不同的成分组成

一个可控制多个聚腺苷酸化位点使用情况的远上游元件(FUE)、一个或多个控制转录单位中每个位点使用情况的近上游元件(NUE)以及聚腺苷酸化位点(CSs)本身。此前有人提出NUE与哺乳动物的聚腺苷酸化信号AAUAAA有关。然而,许多植物基因在其聚腺苷酸化位点附近并不包含类似AAUAAA的基序。为了更好地了解NUE的性质,我们对豌豆rbcS-E9基因中一个聚腺苷酸化位点(位点1)的NUE进行了系统分析;该NUE缺乏AAUAAA基序。接头替换研究表明,该基因中位点1的NUE位于序列AAAUGGAAA中。该结构域中的单核苷酸替换对这个NUE的功能有适度影响。用序列AAUAAA替换该序列的一部分提高了这个NUE的效率。然而,在AAUAAA紧邻的3'端核苷酸的改变则逆转了这种效应。我们的结果表明,位点1的NUE由多达9个核苷酸组成,这9个碱基不包括一个不耐单碱基变化的元件,序列AAUAAA可以作为位点1的NUE发挥作用,并且AAUAAA两侧的序列可以影响其作为NUE发挥作用的效率。

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