School of Biological Sciences, Faculty of Science, University of Auckland, Auckland 1010, New Zealand.
School of Biological Sciences, Faculty of Science, University of Auckland, Auckland 1010, New Zealand.
Int J Parasitol. 2024 May;54(6):257-266. doi: 10.1016/j.ijpara.2024.03.001. Epub 2024 Mar 5.
Trichomonas vaginalis is a medically important protozoan parasite, and a deep-branching, evolutionarily divergent unicellular eukaryote that has conserved several key features of eukaryotic gene expression. Trichomonas vaginalis possesses a metazoan/plant-like capping apparatus, mRNAs with a cap 1 structure and spliceosomes containing the five small nuclear RNAs (snRNAs). However, in contrast to metazoan and plant snRNAs, the structurally conserved T. vaginalis snRNAs were initially identified as lacking the canonical guanosine cap nucleotide. To explain this unusual condition, we sought to investigate transcriptional and processing features of the spliceosomal snRNAs in this protist. Here, we show that T. vaginalis spliceosomal snRNA genes mostly lack typical eukaryotic promoters. In contrast to other eukaryotes, the putative TATA box in the T. vaginalis U6 snRNA gene was found to be dispensable for transcription or RNA polymerase selectivity. Moreover, U6 transcription in T. vaginalis was virtually insensitive to tagetitoxin compared with other cellular transcripts produced by the same RNA polymerase III. Most important and unexpected, snRNA transcription in T. vaginalis appears to bypass capping as we show that these transcripts retain their original 5'-triphosphate groups. In conclusion, transcription and processing of spliceosomal snRNAs in T. vaginalis deviate considerably from the conventional rules of other eukaryotes.
阴道毛滴虫是一种重要的医学原生动物寄生虫,是一种深分枝的、进化上分化的单细胞真核生物,保留了真核生物表达的几个关键特征。阴道毛滴虫具有后生动物/植物样的加帽装置、具有帽 1 结构的 mRNAs 和含有五个小核 RNA(snRNA)的剪接体。然而,与后生动物和植物 snRNA 不同,结构保守的阴道毛滴虫 snRNA 最初被鉴定为缺乏典型的鸟苷帽核苷酸。为了解释这种不寻常的情况,我们试图研究这种原生动物中剪接体 snRNA 的转录和加工特征。在这里,我们表明,阴道毛滴虫剪接体 snRNA 基因大多缺乏典型的真核启动子。与其他真核生物不同,我们发现,阴道毛滴虫 U6 snRNA 基因中的假定 TATA 盒对于转录或 RNA 聚合酶选择性是可有可无的。此外,与由同一 RNA 聚合酶 III 产生的其他细胞内转录物相比,阴道毛滴虫中的 U6 转录对金雀花碱几乎不敏感。最重要的是,出乎意料的是,阴道毛滴虫中的 snRNA 转录似乎绕过了加帽,因为我们表明这些转录物保留了其原始的 5'-三磷酸基团。总之,阴道毛滴虫剪接体 snRNA 的转录和加工与其他真核生物的常规规则有很大的不同。