Department of Microbiology and Immunology, University at Buffalo Jacobs School of Medicine and Biomedical Sciences, Buffalo, NY 14203.
Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, MI 48824.
Nucleic Acids Res. 2019 Apr 23;47(7):3640-3657. doi: 10.1093/nar/gkz012.
Most mitochondrial mRNAs in kinetoplastids require extensive uridine insertion/deletion editing to generate translatable open reading frames. Editing is specified by trans-acting gRNAs and involves a complex machinery including basal and accessory factors. Here, we utilize high-throughput sequencing to analyze editing progression in two minimally edited mRNAs that provide a simplified system due their requiring only two gRNAs each for complete editing. We show that CYb and MURF2 mRNAs exhibit barriers to editing progression that differ from those previously identified for pan-edited mRNAs, primarily at initial gRNA usage and gRNA exchange. We demonstrate that mis-edited junctions arise through multiple pathways including mis-alignment of cognate gRNA, incorrect and sometimes promiscuous gRNA utilization and inefficient gRNA anchoring. We then examined the roles of accessory factors RBP16 and MRP1/2 in maintaining edited CYb and MURF2 populations. RBP16 is essential for initiation of CYb and MURF2 editing, as well as MURF2 editing progression. In contrast, MRP1/2 stabilizes both edited mRNA populations, while further promoting progression of MURF2 mRNA editing. We also analyzed the effects of RNA Editing Substrate Binding Complex components, TbRGG2 and GAP1, and show that both proteins modestly impact progression of editing on minimally edited mRNAs, suggesting a novel function for GAP1.
大多数动基体目生物的线粒体 mRNA 需要广泛的尿嘧啶插入/缺失编辑才能生成可翻译的开放阅读框。编辑由反式作用的 gRNA 特异性指定,涉及包括基本和辅助因子在内的复杂机制。在这里,我们利用高通量测序分析了两种最小编辑的 mRNA 的编辑进展,由于每个 mRNA 只需要两个 gRNA 即可完成编辑,因此它们提供了一个简化的系统。我们表明,CYb 和 MURF2 mRNA 的编辑进展存在与以前鉴定的全编辑 mRNA 不同的障碍,主要是在初始 gRNA 使用和 gRNA 交换方面。我们证明,错误编辑的 junctions 是通过多种途径产生的,包括 gRNA 匹配错误、gRNA 使用不正确且有时不严格以及 gRNA 锚定效率低下。然后,我们研究了辅助因子 RBP16 和 MRP1/2 在维持编辑后的 CYb 和 MURF2 群体中的作用。RBP16 对于 CYb 和 MURF2 的编辑起始以及 MURF2 的编辑进展至关重要。相比之下,MRP1/2 稳定了两个编辑的 mRNA 群体,同时进一步促进了 MURF2 mRNA 编辑的进展。我们还分析了 RNA 编辑底物结合复合物成分 TbRGG2 和 GAP1 的影响,并表明这两种蛋白质对最小编辑的 mRNA 编辑进展有一定影响,表明 GAP1 具有新的功能。