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A novel spliceosome-mediated trans-splicing can change our view on genome complexity of the divergent eukaryote Giardia intestinalis

机译:一种新颖的剪接体介导的转拼可以改变我们对不同真核生物贾第虫肠道基因组复杂性的看法

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摘要

Although spliceosomal introns are an abundant landmark in eukaryotic genomes, the nuclear genome of the divergent eukaryote Giardia intestinalis, the causative agent of giardiasis, has been considered as “intron-poor” with only five canonical (cis-spliced) introns. However, three research groups (including ours) have independently reported a novel class of spliceosomal introns in the G. intestinalis genome. Three protein-coding genes are split into pieces in the G. intestinalis genome, and each of the partial coding regions was independently transcribed into polyadenylated premature mRNAs (pre-mRNAs). The two pre-mRNAs directly interact with each other by an intermolecular-stem structure formed between their noncoding portions, and are then processed into mature mRNAs by spliceosome-mediated trans-splicing. Here, we summarize the recently published works on split introns (“splintrons”) in the G. intestinalis genome, and then provide our speculation on the functional property of the Giardia spliceosomes based on the putative ratio of splintrons to canonical introns. Finally, we discuss a scenario for the transition from typical GT-AG boundaries to non-typical AT-AC boundaries in a particular splintron of Giardia.
机译:尽管剪接体内含子是真核生物基因组中的一个重要标志,但发散的真核贾第鞭毛虫(贾第鞭毛虫的病原体)的核基因组被认为是“弱内含子”,只有五个规范(顺式剪接)内含子。但是,三个研究小组(包括我们的研究小组)已独立报告了肠肠球菌基因组中一类新型的剪接内含子。三个蛋白质编码基因在肠肠球菌基因组中分为多个片段,每个部分编码区独立转录为聚腺苷酸化的早熟mRNA(pre-mRNA)。两个前mRNA通过其非编码部分之间形成的分子间茎结构直接相互相互作用,然后通过剪接体介导的反式剪接加工为成熟的mRNA。在这里,我们总结了最近发表的关于肠内肠球菌基因组中分裂内含子(“ splintrons”)的著作,然后根据splintron与规范内含子的推定比率,对贾第鞭毛虫剪接体的功能特性进行了推测。最后,我们讨论了在贾第鞭毛虫的特定回旋中从典型的GT-AG边界过渡到非典型的AT-AC边界的情况。

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