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RNA: A JACK OF ALL TRADES. Studying the regulatory role of 6S RNA in E. coli and the impact of exosomal RNA in parasite pathogenesis

机译:RNA:千篇一律。研究6S RNA在大肠杆菌中的调控作用以及外体RNA在寄生虫发病机理中的影响

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摘要

During the past two decades we have seen an explosion in our understanding of RNA dependent gene regulation. We now know that RNA is involved in every major event in the life of cells, from the Okazaki fragments involved in DNA replication to programmed cell death. The work described here explores two situations in which RNA plays an important role; how 6S RNA helps ensure bacterial survival and the role of RNA in helping the intracellular parasite, Leishmania, escape the immune system by taking refuge inside mammalian macrophages.6S RNA is a non-coding RNA that regulates bacterial transcription by sequestering the RNA polymerase holoenzyme (Eσ70) in low nutrient conditions. In high nutrient environments, Eσ70 is released by the synthesis of a short product RNA (pRNA) using the 6S RNA as a template. A range of 6S RNA release-defective mutants were selected and characterized from a highly diverse in vitro pool. There is complex crosstalk between regions of the 6S RNA large open bubble that interact with Eσ70 in a cooperative manner so as to ensure efficient pRNA-dependent release. When a group of 6S RNA mutants was over-expressed in E. coli, they significantly delayed growth and decreased cell survival indicating that 6S RNA release rate plays a key role in regulating normal transcriptional dynamics and ultimately cell division. Interestingly, cells resumed normal growth rates approximately 6 hours after mutant 6S RNA overexpression. This growth pattern might be correlated with the accumulation of a protein factor that binds strongly to the 6S and mutant 6S RNA, and data suggest that 6S RNA also might bind to an RNase.RNA may contribute directly to parasite pathogenesis in trypanosomatids. Leishmania spp. uses exosomes to weaken mammalian host cells. Exosomes are known to be involved in intercellular communication. We examined the use of exosomes and their RNA from two species of Leishmania and how that RNA reprograms host cells. Exosome RNA cargo is delivered to host cell cytoplasm during in vitro studies. Sequencing of exosomal RNA indicated that the majority of cargo sequences were derived from non-coding RNA, while Northern blotting confirmed the specific and selective enrichment of tRNA-derived small RNAs in exosomes. We also identified a number of novel transcripts, which appeared to be specifically enriched in exosomes compared to total cell RNA. To our knowledge this is the first report that exosomes are used by a pathogen to invade new host cells. These findings also open up a new avenue of research on non-canonical, small RNA pathways in trypanosomatid parasites, which may elucidate pathogenesis factors and identify novel therapeutic targets.
机译:在过去的二十年中,我们对RNA依赖性基因调控的理解有了突飞猛进的发展。现在我们知道,RNA参与了细胞生命中的每个重大事件,从涉及DNA复制的冈崎片段到程序性细胞死亡。此处描述的工作探讨了RNA发挥重要作用的两种情况。 6S RNA如何通过确保哺乳动物巨噬细胞的庇护而确保细菌存活以及RNA在帮助细胞内寄生虫利什曼原虫逃脱免疫系统中的作用.6S RNA是一种非编码RNA,通过隔离RNA聚合酶全酶来调节细菌的转录( Eσ70)在低营养条件下。在高营养的环境中,以6S RNA为模板合成短产物RNA(pRNA)释放Eσ70。从高度多样化的体外库中选择并表征了一系列6S RNA释放缺陷型突变体。在6S RNA大气泡区域之间存在复杂的串扰,它们以协同方式与Eσ70相互作用,以确保有效的pRNA依赖性释放。当一组6S RNA突变体在大肠杆菌中过量表达时,它们会显着延迟生长并降低细胞存活率,这表明6S RNA释放速率在调节正常转录动力学和最终细胞分裂中起关键作用。有趣的是,细胞在突变6S RNA过表达后约6小时恢复了正常的生长速度。这种生长方式可能与与6S和突变6S RNA强烈结合的蛋白质因子的积累有关,数据表明6S RNA也可能与RNase结合.RNA可能直接有助于锥虫的寄生虫发病机理。利什曼原虫属使用外泌体来减弱哺乳动物宿主细胞。已知外来体参与细胞间通讯。我们检查了利什曼原虫两种物种的外泌体及其RNA的使用,以及该RNA如何重编程宿主细胞。在体外研究过程中,外来体RNA货物被递送到宿主细胞质。外泌体RNA的测序表明,大部分货物序列均来自非编码RNA,而RNA印迹证实了外泌体中tRNA衍生的小RNA的特异性和选择性富集。我们还鉴定了许多新颖的转录本,与总细胞RNA相比,它们似乎在外泌体中特别富集。据我们所知,这是病原体利用外来体入侵新宿主细胞的第一个报道。这些发现也为锥虫的寄生虫中的非规范性小RNA途径的研究开辟了一条新途径,这可能阐明发病机理并确定新的治疗靶标。

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