Seattle Biomedical Research Institute, Seattle, Washington, United States of America.
PLoS One. 2010 Jan 27;5(1):e8913. doi: 10.1371/journal.pone.0008913.
Most mitochondrial mRNAs in trypanosomes undergo uridine insertion/deletion editing that is catalyzed by approximately 20S editosomes. The editosome component KREPA3 is essential for editosome structural integrity and its two zinc finger (ZF) motifs are essential for editing in vivo but not in vitro. KREPA3 function was further explored by examining the consequence of mutation of its N- and C-terminal ZFs (ZF1 and ZF2, respectively). Exclusively expressed myc-tagged KREPA3 with ZF2 mutation resulted in lower KREPA3 abundance and a relative increase in KREPA2 and KREL1 proteins. Detailed analysis of edited RNA products revealed the accumulation of partially edited mRNAs with less insertion editing compared to the partially edited mRNAs found in the cells with wild type KREPA3 expression. Mutation of ZF1 in TAP-tagged KREPA3 also resulted in accumulation of partially edited mRNAs that were shorter and only edited in the 3'-terminal editing region. Mutation of both ZFs essentially eliminated partially edited mRNA. The mutations did not affect gRNA abundance. These data indicate that both ZFs are essential for the progression of editing and perhaps its accuracy, which suggests that KREPA3 plays roles in the editing process via its ZFs interaction with editosome proteins and/or RNA substrates.
大多数线粒体 mRNA 在锥虫中经历尿嘧啶插入/缺失编辑,该编辑由大约 20S 编辑体催化。编辑体成分 KREPA3 对编辑体结构完整性至关重要,其两个锌指 (ZF) 基序对于体内编辑是必不可少的,但在体外则不是。通过检查其 N 端和 C 端 ZF(分别为 ZF1 和 ZF2)突变的后果,进一步探索了 KREPA3 的功能。仅表达具有 ZF2 突变的 myc 标记的 KREPA3 导致 KREPA3 丰度降低,并且 KREPA2 和 KREL1 蛋白相对增加。对编辑 RNA 产物的详细分析表明,与具有野生型 KREPA3 表达的细胞中发现的部分编辑的 mRNA 相比,积累了具有较少插入编辑的部分编辑的 mRNA。在 TAP 标记的 KREPA3 中突变 ZF1 也导致部分编辑的 mRNA 积累,这些 mRNA 更短,仅在 3'-末端编辑区域进行编辑。两个 ZF 的突变基本上消除了部分编辑的 mRNA。这些突变不影响 gRNA 的丰度。这些数据表明,两个 ZF 对于编辑的进展和准确性都是必不可少的,这表明 KREPA3 通过其与编辑体蛋白和/或 RNA 底物的 ZF 相互作用在编辑过程中发挥作用。