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Molecular genetics and comparative genomics reveal RNAi is not functional in malaria parasites

机译:分子遗传学和比较基因组学揭示RNAi在疟原虫中不起作用

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摘要

Techniques for targeted genetic disruption in Plasmodium, the causative agent of malaria, are currently intractable for those genes that are essential for blood stage development. The ability to use RNA interference (RNAi) to silence gene expression would provide a powerful means to gain valuable insight into the pathogenic blood stages but its functionality in Plasmodium remains controversial. Here we have used various RNA-based gene silencing approaches to test the utility of RNAi in malaria parasites and have undertaken an extensive comparative genomics search using profile hidden Markov models to clarify whether RNAi machinery exists in malaria. These investigative approaches revealed that Plasmodium lacks the enzymology required for RNAi-based ablation of gene expression and indeed no experimental evidence for RNAi was observed. In its absence, the most likely explanations for previously reported RNAi-mediated knockdown are either the general toxicity of introduced RNA (with global down-regulation of gene expression) or a specific antisense effect mechanistically distinct from RNAi, which will need systematic analysis if it is to be of use as a molecular genetic tool for malaria parasites.
机译:疟疾的致病因子疟原虫中靶向遗传破坏的技术目前对于那些对于血液阶段发育至关重要的基因来说是棘手的。利用RNA干扰(RNAi)沉默基因表达的能力将提供一种强大的手段,以获取对致病性血液阶段的宝贵见解,但其在疟原虫中的功能仍存在争议。在这里,我们使用了多种基于RNA的基因沉默方法来测试RNAi在疟疾寄生虫中的效用,并使用隐性隐马尔可夫模型进行了广泛的比较基因组学搜索,以阐明疟疾中是否存在RNAi机制。这些研究方法表明,疟原虫缺乏基于RNAi的基因表达消融所需要的酶学,实际上没有观察到RNAi的实验证据。在没有RNAi的情况下,以前报道的RNAi介导的敲低的最可能解释是引入的RNA的一般毒性(基因表达的整体下调)或机械上不同于RNAi的特定反义作用,如果需要,则需要系统分析被用作疟疾寄生虫的分子遗传工具。

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