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Strand-specific RNA sequencing in Plasmodium falciparum malaria identifies developmentally regulated long non-coding RNA and circular RNA

机译:恶性疟原虫疟疾中的链特异性RNA测序鉴定了发育受调控的长非编码RNA和环状RNA

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The human malaria parasite Plasmodium falciparum has a complex and multi-stage life cycle that requires extensive and precise gene regulation to allow invasion and hijacking of host cells, transmission, and immune escape. To date, the regulatory elements orchestrating these critical parasite processes remain largely unknown. Yet it is becoming increasingly clear that long non-coding RNAs (lncRNAs) could represent a missing regulatory layer across a broad range of organisms. To investigate the regulatory capacity of lncRNA in P. falciparum, we harvested fifteen samples from two time-courses. Our sample set profiled 56?h of P. falciparum blood stage development. We then developed and validated strand-specific, non-polyA-selected RNA sequencing methods, and pursued the first assembly of P. falciparum strand-specific transcript structures from RNA sequencing data. This approach enabled the annotation of over one thousand lncRNA transcript models and their comprehensive global analysis: coding prediction, periodicity, stage-specificity, correlation, GC content, length, location relative to annotated transcripts, and splicing. We validated the complete splicing structure of three lncRNAs with compelling properties. Non-polyA-selected deep sequencing also enabled the prediction of hundreds of intriguing P. falciparum circular RNAs, six of which we validated experimentally. We found that a subset of lncRNAs, including all subtelomeric lncRNAs, strongly peaked in expression during invasion. By contrast, antisense transcript levels significantly dropped during invasion. As compared to neighboring mRNAs, the expression of antisense-sense pairs was significantly anti-correlated during blood stage development, indicating transcriptional interference. We also validated that P. falciparum produces circRNAs, which is notable given the lack of RNA interference in the organism, and discovered that a highly expressed, five-exon antisense RNA is poised to regulate P. falciparum gametocyte development 1 (PfGDV1), a gene required for early sexual commitment events.
机译:人类疟原虫恶性疟原虫具有复杂且多阶段的生命周期,需要广泛而精确的基因调控,才能使宿主细胞入侵和劫持,传播和免疫逃逸。迄今为止,编排这些关键的寄生虫过程的监管要素仍然鲜为人知。然而,越来越清楚的是,长的非编码RNA(lncRNA)可能代表了广泛的生物体缺少的调控层。为了调查恶性疟原虫中lncRNA的调控能力,我们从两个时间过程中收获了十五个样品。我们的样本集分析了恶性疟原虫血液阶段发展56?h。然后,我们开发并验证了链特异性,非polyA选择的RNA测序方法,并从RNA测序数据中进行了恶性疟原虫链特异性转录本结构的首次组装。这种方法可以注释一千多个lncRNA转录本模型,并对其进行全面的全局分析:编码预测,周期性,阶段特异性,相关性,GC含量,长度,相对于带注释的转录本的位置以及剪接。我们验证了三个具有引人注目的特性的lncRNA的完整剪接结构。非polyA选择的深度测序还可以预测数百种有趣的恶性疟原虫环状RNA,我们通过实验验证了其中的六个。我们发现lncRNA的一个子集,包括所有亚端粒lncRNA,在侵袭过程中表达强烈达到峰值。相比之下,反义转录本水平在入侵期间显着下降。与邻近的mRNA相比,在血液发育过程中,反义对的表达显着抗相关,表明转录干扰。我们还验证了恶性疟原虫会产生circRNA,这在有机体中缺乏RNA干扰的情况下非常明显,并且发现高表达的五外显子反义RNA有望调节恶性疟原虫配子体发育1(PfGDV1)。早期性承诺事件所需的基因。

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