首页> 外文期刊>Nucleic acids research >Alternative splicing and nonsense-mediated decay modulate expression of important regulatory genes in Arabidopsis
【24h】

Alternative splicing and nonsense-mediated decay modulate expression of important regulatory genes in Arabidopsis

机译:选择性剪接和无意义介导的衰变调节拟南芥中重要调控基因的表达

获取原文
           

摘要

Alternative splicing (AS) coupled to nonsense-mediated decay (NMD) is a post-transcriptional mechanism for regulating gene expression. We have used a high-resolution AS RT–PCR panel to identify endogenous AS isoforms which increase in abundance when NMD is impaired in the Arabidopsis NMD factor mutants, upf1-5 and upf3-1. Of 270 AS genes (950 transcripts) on the panel, 102 transcripts from 97 genes (32%) were identified as NMD targets. Extrapolating from these data around 13% of intron-containing genes in the Arabidopsis genome are potentially regulated by AS/NMD. This cohort of naturally occurring NMD-sensitive AS transcripts also allowed the analysis of the signals for NMD in plants. We show the importance of AS in introns in 5′ or 3′UTRs in modulating NMD-sensitivity of mRNA transcripts. In particular, we identified upstream open reading frames overlapping the main start codon as a new trigger for NMD in plants and determined that NMD is induced if 3′-UTRs were 350?nt. Unexpectedly, although many intron retention transcripts possess NMD features, they are not sensitive to NMD. Finally, we have shown that AS/NMD regulates the abundance of transcripts of many genes important for plant development and adaptation including transcription factors, RNA processing factors and stress response genes.
机译:选择性剪接(AS)结合无意义介导的衰变(NMD)是调控基因表达的转录后机制。我们使用了高分辨率的AS RT-PCR小组来鉴定当拟南芥NMD因子突变体upf1-5和upf3-1中NMD受损时,内源性AS同工型的丰度增加。小组中的270个AS基因(950个转录物)中,来自97个基因的102个转录物(占32%)被确定为NMD靶标​​。从这些数据推断,拟南芥基因组中约13%的内含子基因可能受到AS / NMD的调控。天然存在的对NMD敏感的AS转录物的队列也允许分析植物中NMD的信号。我们显示出AS在5'或3'UTR的内含子中调节mRNA转录本的NMD敏感性的重要性。特别是,我们确定了与主要起始密码子重叠的上游开放阅读框是植物中NMD的新触发因素,并确定如果3'-UTR> 350?nt,则诱导了NMD。出乎意料的是,尽管许多内含子保留转录本具有NMD功能,但它们对NMD不敏感。最后,我们已经表明,AS / NMD可调节许多对植物发育和适应重要的基因的转录本,包括转录因子,RNA加工因子和胁迫响应基因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号