Anthonisen I L, Salvador M L, Klein U
Department of Biology, University of Oslo, Blindern, Norway.
RNA. 2001 Jul;7(7):1024-33. doi: 10.1017/s1355838201001479.
Using a series of point mutations in chimeric reporter gene constructs consisting of the 5' regions of the Chlamydomonas chloroplast rbcL or atpB genes fused 5' to the coding sequence of the bacterial uidA (GUS) gene, RNA-stabilizing sequence elements were identified in vivo in the 5' untranslated regions (5' UTRs) of transcripts of the chloroplast genes rbcL and atpB in Chlamydomonas reinhardtii. In chimeric rbcL 5' UTR:GUS transcripts, replacement of single nucleotides in the 10-nt sequence 5'-AUUUCCGGAC-3', extending from positions +38 to +47 relative to the transcripts' 5' terminus, shortened transcript longevity and led to a reduction in transcript abundance of more than 95%. A similar mutational analysis of atpB 5' UTR:GUS transcripts showed that the 12-nt atpB 5' UTR sequence 5'-AUAAGCGUUAGU-3', extending from position +31 to position +42, is important for transcript stability and transcript accumulation in the chloroplast of Chlamydomonas. We discuss how the 5' UTR sequence elements, which are predicted to be part of RNA secondary structures, might function in RNA stabilization.
利用一系列点突变构建嵌合报告基因,该基因由莱茵衣藻叶绿体rbcL或atpB基因的5'区域与细菌uidA(GUS)基因的编码序列5'端融合而成,从而在莱茵衣藻叶绿体基因rbcL和atpB转录本的5'非翻译区(5'UTR)中体内鉴定出RNA稳定序列元件。在嵌合的rbcL 5'UTR:GUS转录本中,相对于转录本5'末端,从+38位延伸至+47位的10个核苷酸序列5'-AUUUCCGGAC-3'中的单个核苷酸被替换,缩短了转录本寿命,并导致转录本丰度降低超过95%。对atpB 5'UTR:GUS转录本进行的类似突变分析表明,从+31位延伸至+42位的12个核苷酸的atpB 5'UTR序列5'-AUAAGCGUUAGU-3'对莱茵衣藻叶绿体中的转录本稳定性和转录本积累很重要。我们讨论了预计为RNA二级结构一部分的5'UTR序列元件如何在RNA稳定中发挥作用。