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Unproductive alternative splicing and nonsense mRNAs: A widespread phenomenon among plant circadian clock genes

机译:非生产性的选择性剪接和无意义的mRNA:植物生物钟基因之间的普遍现象

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Background Recent mapping of eukaryotic transcriptomes and spliceomes using massively parallel RNA sequencing (RNA-seq) has revealed that the extent of alternative splicing has been considerably underestimated. Evidence also suggests that many pre-mRNAs undergo unproductive alternative splicing resulting in incorporation of in-frame premature termination codons (PTCs). The destinies and potential functions of the PTC-harboring mRNAs remain poorly understood. Unproductive alternative splicing in circadian clock genes presents a special case study because the daily oscillations of protein expression levels require rapid and steep adjustments in mRNA levels. Results We conducted a systematic survey of alternative splicing of plant circadian clock genes using RNA-seq and found that many Arabidopsis thaliana circadian clock-associated genes are alternatively spliced. Results were confirmed using reverse transcription polymerase chain reaction (RT-PCR), quantitative RT-PCR (qRT-PCR), and/or Sanger sequencing. Intron retention events were frequently observed in mRNAs of the CCA1/LHY-like subfamily of MYB transcription factors. In contrast, the REVEILLE2 (RVE2) transcript was alternatively spliced via inclusion of a "poison cassette exon" (PCE). The PCE type events introducing in-frame PTCs are conserved in some mammalian and plant serine/arginine-rich splicing factors. For some circadian genes such as CCA1 the ratio of the productive isoform (i.e., a representative splice variant encoding the full-length protein) to its PTC counterpart shifted sharply under specific environmental stress conditions. Conclusions Our results demonstrate that unproductive alternative splicing is a widespread phenomenon among plant circadian clock genes that frequently generates mRNA isoforms harboring in-frame PTCs. Because LHY and CCA1 are core components of the plant central circadian oscillator, the conservation of alternatively spliced variants between CCA1 and LHY and for CCA1 across phyla [2] indicates a potential role of nonsense transcripts in regulation of circadian rhythms. Most of the alternatively spliced isoforms harbor in-frame PTCs that arise from full or partial intron retention events. However, a PTC in the RVE2 transcript is introduced through a PCE event. The conservation of AS events and modulation of the relative abundance of nonsense isoforms by environmental and diurnal conditions suggests possible regulatory roles for these alternatively spliced transcripts in circadian clock function. The temperature-dependent expression of the PTC transcripts among members of CCA1/LHY subfamily indicates that alternative splicing may be involved in regulation of the clock temperature compensation mechanism. Reviewers This article was reviewed by Dr. Eugene Koonin, Dr. Chungoo Park (nominated by Dr. Kateryna Makova), and Dr. Marcelo Yanovsky (nominated by Dr. Valerian Dolja).
机译:背景技术最近使用大规模平行RNA测序(RNA-seq)绘制真核转录组和剪接组的图谱显示,选择性剪接的范围被大大低估了。证据还表明,许多pre-mRNA经历了无效的选择性剪接,导致掺入了框架内过早终止密码子(PTC)。携带PTC的mRNA的命运和潜在功能仍然知之甚少。昼夜节律基因中非生产性的选择性剪接提出了一个特殊的案例研究,因为蛋白质表达水平的日常振荡需要对mRNA水平进行快速而陡峭的调整。结果我们使用RNA-seq对植物生物钟基因的选择性剪接进行了系统的调查,发现许多拟南芥生物钟相关的基因被交替剪接。使用逆转录聚合酶链反应(RT-PCR),定量RT-PCR(qRT-PCR)和/或Sanger测序证实了结果。内含子保留事件经常在MYB转录因子的CCA1 / LHY样亚家族的mRNA中观察到。相反,可通过加入“毒盒外显子”(PCE)来剪接REVEILLE2(RVE2)转录本。引入框内PTC的PCE类型事件在某些哺乳动物和富含植物丝氨酸/精氨酸的剪接因子中得以保留。对于某些昼夜节律基因,例如CCA1,在特定的环境胁迫条件下,生产力同工型(即编码全长蛋白的代表性剪接变体)与其PTC对应物的比率急剧变化。结论我们的结果表明,非生产性的选择性剪接是植物生物钟基因中的一种普遍现象,该生物钟基因经常产生带有框内PTC的mRNA同工型。由于LHY和CCA1是植物中央昼夜节律振荡器的核心组成部分,CCA1和LHY之间以及跨门的CCA1之间交替剪接的变异体的保守性[2]表明无意义的转录本在昼夜节律的调节中具有潜在的作用。大多数选择性剪接的同工型都包含框架内PTC,这些框架是由于全部或部分内含子保留事件引起的。但是,RVE2成绩单中的PTC是通过PCE事件引入的。 AS事件的保守性和环境和昼夜条件对无意义同工型的相对丰度的调节表明,这些交替剪接的转录本在昼夜节律功能中可能具有调节作用。 CCA1 / LHY亚家族成员之间PTC转录物的温度依赖性表达表明,选择性剪接可能参与时钟温度补偿机制的调节。审阅者本文由Eugene Koonin博士,Chungoo Park博士(由Kateryna Makova博士提名)和Marcelo Yanovsky博士(由Valerian Dolja博士提名)进行了审查。

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