首页> 美国卫生研究院文献>PLoS Pathogens >A Complex Small RNA Repertoire Is Generated by a Plant/Fungal-Like Machinery and Effected by a Metazoan-Like Argonaute in the Single-Cell Human Parasite Toxoplasma gondii
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A Complex Small RNA Repertoire Is Generated by a Plant/Fungal-Like Machinery and Effected by a Metazoan-Like Argonaute in the Single-Cell Human Parasite Toxoplasma gondii

机译:一种复杂的小RNA库是由植物/真菌类机械产生的并受后生动物类Argonaute影响的单细胞人类寄生虫弓形虫

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摘要

In RNA silencing, small RNAs produced by the RNase-III Dicer guide Argonaute-like proteins as part of RNA-induced silencing complexes (RISC) to regulate gene expression transcriptionally or post-transcriptionally. Here, we have characterized the RNA silencing machinery and exhaustive small RNAome of Toxoplasma gondii, member of the Apicomplexa, a phylum of animal- and human-infecting parasites that cause extensive health and economic damages to human populations worldwide. Remarkably, the small RNA-generating machinery of Toxoplasma is phylogenetically and functionally related to that of plants and fungi, and accounts for an exceptionally diverse array of small RNAs. This array includes conspicuous populations of repeat-associated small interfering RNA (siRNA), which, as in plants, likely generate and maintain heterochromatin at DNA repeats and satellites. Toxoplasma small RNAs also include many microRNAs with clear metazoan-like features whose accumulation is sometimes extremely high and dynamic, an unexpected finding given that Toxoplasma is a unicellular protist. Both plant-like heterochromatic small RNAs and metazoan-like microRNAs bind to a single Argonaute protein, Tg-AGO. Toxoplasma miRNAs co-sediment with polyribosomes, and thus, are likely to act as translational regulators, consistent with the lack of catalytic residues in Tg-AGO. Mass spectrometric analyses of the Tg-AGO protein complex revealed a common set of virtually all known RISC components so far characterized in human and Drosophila, as well as novel proteins involved in RNA metabolism. In agreement with its loading with heterochromatic small RNAs, Tg-AGO also associates substoichiometrically with components of known chromatin-repressing complexes. Thus, a puzzling patchwork of silencing processor and effector proteins from plant, fungal and metazoan origin accounts for the production and action of an unsuspected variety of small RNAs in the single-cell parasite Toxoplasma and possibly in other apicomplexans. This study establishes Toxoplasma as a unique model system for studying the evolution and molecular mechanisms of RNA silencing among eukaryotes.
机译:在RNA沉默中,RNase-III Dicer产生的小RNA引导Argonaute样蛋白作为RNA诱导沉默复合物(RISC)的一部分,以转录或转录后调控基因表达。在这里,我们已经描述了弓形虫的弓形虫RNA沉默机制和详尽的小RNAome,弓形虫是蚜虫复合体的成员,该复合体是一种动植物和人类感染性寄生虫,会对全世界的人类人口造成广泛的健康和经济损害。引人注目的是,弓形虫的小RNA生成机制在系统和功能上与植物和真菌的机制有关,并说明了小RNA异常多样化的阵列。该阵列包括与重复相关的小干扰RNA(siRNA)的显着种群,这些小干扰RNA与植物一样,可能在DNA重复序列和卫星上产生并维持异染色质。弓形虫小RNA还包括许多具有清晰的后生动物样特征的微小RNA,其积累有时非常高且动态,鉴于弓形虫是单细胞生物,这是一个出乎意料的发现。像植物一样的异色小RNA和像后生动物一样的微小RNA都与单个Argonaute蛋白Tg-AGO结合。弓形虫miRNA与多核糖体共沉淀,因此可能充当翻译调节剂,这与Tg-AGO中缺乏催化残基相一致。 Tg-AGO蛋白复合物的质谱分析揭示了迄今为止所有以人和果蝇为特征的几乎所有已知的RISC组分的通用集合,以及涉及RNA代谢的新型蛋白。与装载异色小RNA一致,Tg-AGO还可以在化学计量上与已知的染色质抑制复合物的组分缔合。因此,来自植物,真菌和后生动物来源的沉默加工因子和效应蛋白的令人费解的拼凑说明了单细胞寄生虫弓形虫以及可能的其他蜂复合体中各种小RNA的产生和作用。这项研究将弓形虫建立为一个独特的模型系统,用于研究真核生物中RNA沉默的进化和分子机制。

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