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环境胁迫介导的叶绿体RNA结合蛋白转录本3'端形成差异

Environmental stress-mediated differential 3' end formation of chloroplast RNA-binding protein transcripts.

作者信息

Breiteneder H, Michalowski C B, Bohnert H J

机构信息

Department of Biochemistry, University of Arizona, Tucson 85721.

出版信息

Plant Mol Biol. 1994 Nov;26(3):833-49. doi: 10.1007/BF00028852.

Abstract

We report the characterization of transcripts from the halophyte, Mesembryanthemum crystallinum, encoding a protein with high homology to chloroplast RNA-binding proteins (cRBP). In this plant chloroplast-related functions are largely protected against salt stress. cRBP transcripts are derived from a single gene, Mc32crbp, although three size classes of polyadenylated mRNAs are detected. Transcription rate and steady state amounts of mRNA are developmentally regulated and light controlled with strong transcriptional activity as functional chloroplasts are established, and with lower maintenance activity thereafter. Upon salt stress, the rate of transcription decreases, although transcript levels increase. Accompanying stress, a change in the distribution of transcript size classes is observed as the longest transcript with an untranslated 3' end of 381 nucleotides increases relative to transcripts with shorter 3' ends. The long transcript is characterized by the presence of five sequence elements in the 3'-untranslated region that are present in cRBP mRNAs from a variety of plants, although not all elements are found in each mRNA. The results may indicate a mechanism by which mRNA levels of constitutively light-regulated genes may be modulated without enhanced transcription in response to environmental cues.

摘要

我们报道了盐生植物冰叶日中花转录本的特征,这些转录本编码一种与叶绿体RNA结合蛋白(cRBP)具有高度同源性的蛋白质。在这种植物中,叶绿体相关功能在很大程度上免受盐胁迫的影响。cRBP转录本来源于一个单一基因Mc32crbp,尽管检测到三种大小类别的多聚腺苷酸化mRNA。mRNA的转录速率和稳态量在发育过程中受到调控,并且在功能性叶绿体建立时受到光的控制,转录活性很强,此后维持活性较低。在盐胁迫下,转录速率降低,尽管转录本水平增加。伴随着胁迫,观察到转录本大小类别的分布发生变化,因为具有381个核苷酸非翻译3'末端的最长转录本相对于具有较短3'末端的转录本增加。长转录本的特征是在3'-非翻译区存在五个序列元件,这些元件存在于来自多种植物的cRBP mRNA中,尽管并非每个mRNA中都发现所有元件。结果可能表明一种机制,即组成型光调节基因的mRNA水平可以在不增强转录的情况下响应环境信号进行调节。

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