Department of Biology, University of Copenhagen, DK-2200 Copenhagen N, Denmark.
Biotech Research and Innovation Centre, University of Copenhagen, DK-2200 Copenhagen N, Denmark.
Plant Cell. 2020 Jun;32(6):1845-1867. doi: 10.1105/tpc.19.00815. Epub 2020 Mar 25.
In animals, RNA polymerase II initiates transcription bidirectionally from gene promoters to produce pre-mRNAs on the forward strand and promoter upstream transcripts (PROMPTs) on the reverse strand. PROMPTs are degraded by the nuclear exosome. Previous studies based on nascent RNA approaches concluded that Arabidopsis () does not produce PROMPTs. Here, we used steady-state RNA sequencing in mutants defective in nuclear RNA decay including the exosome to reassess the existence of Arabidopsis PROMPTs. While they are rare, we identified ∼100 cases of exosome-sensitive PROMPTs in Arabidopsis. Such PROMPTs are sources of small interfering RNAs in exosome-deficient mutants, perhaps explaining why plants have evolved mechanisms to suppress PROMPTs. In addition, we found ∼200 long, unspliced and exosome-sensitive antisense RNAs that arise from transcription start sites within parts of the genome encoding 3'-untranslated regions on the sense strand. The previously characterized noncoding RNA that regulates expression of the key seed dormancy regulator, , is a typical representative of this class of RNAs. Transcription factor genes are overrepresented among loci with exosome-sensitive antisense RNAs, suggesting a potential for widespread control of gene expression via this class of noncoding RNAs. Lastly, we assess the use of alternative promoters in Arabidopsis and compare the accuracy of existing TSS annotations.
在动物中,RNA 聚合酶 II 从基因启动子双向起始转录,在前导链上产生前体 mRNA,在后导链上产生启动子上游转录本 (PROMPTs)。PROMPTs 被核核酶体降解。以前基于新生 RNA 方法的研究得出结论,拟南芥不产生 PROMPTs。在这里,我们使用包括核 RNA 降解缺陷突变体在内的稳态 RNA 测序方法,重新评估拟南芥 PROMPTs 的存在。虽然它们很少,但我们在拟南芥中鉴定了约 100 个核酶体敏感的 PROMPTs。这些 PROMPTs 是核酶体缺陷突变体中小干扰 RNA 的来源,这也许可以解释为什么植物进化出了抑制 PROMPTs 的机制。此外,我们还发现了约 200 个长的、未剪接的和核酶体敏感的反义 RNA,它们来源于编码前导链 3'-非翻译区的基因组部分的转录起始位点。先前表征的非编码 RNA 调控关键种子休眠调节剂的表达,是这一类 RNA 的典型代表。在具有核酶体敏感反义 RNA 的基因座中,转录因子基因的数量过多,这表明通过这一类非编码 RNA 可以广泛控制基因表达。最后,我们评估了拟南芥中替代启动子的使用情况,并比较了现有 TSS 注释的准确性。