From the Department of Biology, University of California, Riverside, California 92521.
J Biol Chem. 2013 Nov 15;288(46):32963-78. doi: 10.1074/jbc.M113.501874. Epub 2013 Oct 2.
The mitochondrial 45 S SSU* complex in Trypanosoma brucei contains the 9 S SSU ribosomal RNA, a set of SSU ribosomal proteins, several pentatricopeptide repeat (PPR) proteins, and proteins not typically found in ribosomes, including rhodanese domain protein (Rhod) and a 200-kDa coiled-coil protein. To investigate the function of this complex, PPR29, Rhod, 200-kDa protein, and mitochondrial ribosomal protein S17 were knocked down by RNAi in procyclic T. brucei. A growth retardation phenotype, a reduction in the amount of the 45 S SSU* complexes, and the preferential inhibition of synthesis of the cytochrome c oxidase subunit I over apocytochrome b were observed as early as day 2 postinduction of RNAi. On the contrary, the down-regulation of mitochondrial ribosomal protein L3 drastically reduced the amount of the large subunit and indiscriminately inhibited mitochondrial translation. The relative amounts of translation-competent, long poly(AU)-tailed cytochrome c oxidase subunit I and edited apocytochrome b mRNAs were selectively reduced by ablation of the 45 S SSU* complex. The formation of the 80 S translation complexes, identified by association of the long-tailed mRNAs with the mitoribosomes, was also disrupted. On the other hand, the relative amount of long-tailed edited RPS12 mRNA was not substantially affected, and there was no noticeable effect on the RPS12 translation complexes. In bloodstream trypanosomes, the amount of the 45 S complexes was drastically reduced compared with procyclics. We propose that the 45 S SSU* complex represents a factor required for normal mitochondrial translation that may have selective effects on different mRNAs.
在布氏锥虫中,线粒体 45S SSU复合物包含 9S SSU 核糖体 RNA、一组 SSU 核糖体蛋白、几个五肽重复(PPR)蛋白以及一些通常不在核糖体中发现的蛋白质,包括硫氧还蛋白结构域蛋白(Rhod)和 200kDa 卷曲螺旋蛋白。为了研究该复合物的功能,通过 RNAi 在锥虫前鞭毛体中敲低了 PPR29、Rhod、200kDa 蛋白和线粒体核糖体蛋白 S17。在 RNAi 诱导后第 2 天,就观察到生长迟缓表型、45S SSU复合物数量减少以及细胞色素 c 氧化酶亚基 I 的合成优先受到抑制而细胞色素 b 不受影响。相反,线粒体核糖体蛋白 L3 的下调大大降低了大亚基的数量,并不加区别地抑制了线粒体翻译。通过 45S SSU复合物的消融,选择性地降低了具有翻译能力的、长 poly(AU)-尾细胞色素 c 氧化酶亚基 I 和编辑的细胞色素 b mRNA 的相对含量。通过与线粒体核糖体结合鉴定的 80S 翻译复合物的形成也被破坏。另一方面,长尾编辑的 RPS12 mRNA 的相对含量没有受到实质性影响,并且对 RPS12 翻译复合物也没有明显影响。在血液锥虫中,与前鞭毛体相比,45S 复合物的数量大大减少。我们提出,45S SSU复合物代表了正常线粒体翻译所必需的因素,它可能对不同的 mRNA 具有选择性影响。