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Developmental regulation of edited CYb and COIII mitochondrial mRNAs is achieved by distinct mechanisms in Trypanosoma brucei

机译:通过触发瘤Brucei的不同机制实现了编辑CyB和CoIII线粒体MRNA的发育调节

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摘要

is a parasitic protozoan that undergoes a complex life cycle involving insect and mammalian hosts that present dramatically different nutritional environments. Mitochondrial metabolism and gene expression are highly regulated to accommodate these environmental changes, including regulation of mRNAs that require extensive uridine insertion/deletion (U-indel) editing for their maturation. Here, we use high throughput sequencing and a method for promoting life cycle changes to assess the mechanisms and timing of developmentally regulated edited mRNA expression. We show that edited CYb mRNA is downregulated in mammalian bloodstream forms (BSF) at the level of editing initiation and/or edited mRNA stability. In contrast, edited COIII mRNAs are depleted in BSF by inhibition of editing progression. We identify cell line-specific differences in the mechanisms abrogating COIII mRNA editing, including the possible utilization of terminator gRNAs that preclude the 3′ to 5′ progression of editing. By examining the developmental timing of altered mitochondrial mRNA levels, we also reveal transcript-specific developmental checkpoints in epimastigote (EMF), metacyclic (MCF), and BSF. These studies represent the first analysis of the mechanisms governing edited mRNA levels during development and the first to interrogate U-indel editing in EMF and MCF life cycle stages.
机译:是一种寄生原生动物,经历了一种复杂的生命周期,涉及昆虫和哺乳动物的宿主,这些营养众多营养环境显着存在。高度调节线粒体代谢和基因表达以适应这些环境变化,包括需要大量尿苷插入/缺失(U-Indel)编辑的MRNA的调节。这里,我们使用高通量测序和用于促进生命周期变化的方法,以评估发育调节编辑的mRNA表达的机制和定时。我们表明,在编辑引发和/或编辑的mRNA稳定性的水平下,编辑的Cyb mRNA在哺乳动物血流形式(BSF)中下调。相反,通过抑制编辑进展,编辑的COIII mRNA在BSF中耗尽。我们鉴定了删除了COIII mRNA编辑的机制的细胞系特异性差异,包括可能使用终结器GRNA的终止器GRNA,其妨碍了3'至5'进展的编辑。通过检查改变的线粒体mRNA水平的发育时间,我们还揭示了ePimastigotoote(EMF),MetCaSClic(MCF)和BSF中的转录物特异性发育检查点。这些研究代表了在开发过程中指导编辑的mRNA水平的机制的第一次分析,首先在EMF和MCF生命周期阶段询问U-Indel编辑。

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