Australian Research Council Centre of Excellence in Plant Energy Biology, University of Western Australia, Crawley 6009 WA, Australia.
Plant J. 2012 Mar;69(6):996-1005. doi: 10.1111/j.1365-313X.2011.04849.x. Epub 2011 Dec 28.
Angiosperm mitochondria encode approximately 20 group II introns, which interrupt genes involved in the biogenesis and function of the respiratory chain. Nucleus-encoded splicing factors have been identified for approximately half of these introns. The splicing factors derive from several protein families defined by atypical RNA binding domains that function primarily in organelles. We show here that the Arabidopsis protein WTF9 is essential for the splicing of group II introns in two mitochondrial genes for which splicing factors had not previously been identified: rpl2 and ccmF(C). WTF9 harbors a recently recognized RNA binding domain, the PORR domain, which was originally characterized in the chloroplast splicing factor WTF1. These findings show that the PORR domain family also functions in plant mitochondria, and highlight the parallels between the machineries for group II intron splicing in plant mitochondria and chloroplasts. In addition, we used the splicing defects in wtf9 mutants as a means to functionally characterize the mitochondrial rpl2 and ccmF(C) genes. Loss of ccmF(C) expression correlates with the loss of cytochromes c and c₁, confirming a role for ccmF(C) in cytochrome biogenesis. By contrast, our results strongly suggest that splicing is not essential for the function of the mitochondrial rpl2 gene, and imply that the Rpl2 fragment encoded by rpl2 exon 1 functions in concert with a nuclear gene product that provides the remainder of this essential ribosomal protein in trans.
植物的线粒体编码大约 20 个 II 类内含子,这些内含子中断了参与呼吸链生物发生和功能的基因。大约有一半的这些内含子已经被鉴定出了核编码剪接因子。这些剪接因子来源于几个由非典型 RNA 结合域定义的蛋白家族,这些蛋白家族主要在细胞器中发挥作用。我们在这里表明,拟南芥蛋白 WTF9 对于两个线粒体基因的 II 类内含子的剪接是必需的,这两个基因以前没有鉴定出剪接因子:rpl2 和 ccmF(C)。WTF9 含有一个最近被识别的 RNA 结合域,PORR 结构域,该结构域最初在叶绿体剪接因子 WTF1 中被描述。这些发现表明 PORR 结构域家族也在植物线粒体中起作用,并强调了植物线粒体和叶绿体中 II 类内含子剪接机制之间的相似性。此外,我们利用 wtf9 突变体中的剪接缺陷作为一种功能特征来鉴定线粒体 rpl2 和 ccmF(C)基因。ccmF(C)表达的缺失与细胞色素 c 和 c₁的缺失相关,这证实了 ccmF(C)在细胞色素生物发生中的作用。相比之下,我们的结果强烈表明剪接对于线粒体 rpl2 基因的功能不是必需的,并且暗示 rpl2 外显子 1 编码的 Rpl2 片段与核基因产物协同作用,该核基因产物在反式中提供该必需核糖体蛋白的其余部分。