Kruszewski J, Golik P
University of Warsaw, Institute of Genetics and Biotechnology, Faculty of Biology, Warsaw, 02-106, Poland.
Biochemistry (Mosc). 2016 Oct;81(10):1101-1110. doi: 10.1134/S0006297916100084.
The core mitochondrial RNA polymerase is a single-subunit enzyme that in yeast Saccharomyces cerevisiae is encoded by the nuclear RPO41 gene. It is an evolutionary descendant of the bacteriophage RNA polymerases, but it includes an additional unconserved N-terminal extension (NTE) domain that is unique to the organellar enzymes. This domain mediates interactions between the polymerase and accessory regulatory factors, such as yeast Sls1p and Nam1p. Previous studies demonstrated that deletion of the entire NTE domain results only in a temperature-dependent respiratory deficiency. Several sequences related to the pentatricopeptide (PPR) motifs were identified in silico in Rpo41p, three of which are located in the NTE domain. PPR repeat proteins are a large family of organellar RNA-binding factors, mostly involved in posttranscriptional gene expression mechanisms. To study their function, we analyzed the phenotype of strains bearing Rpo41p variants where each of these motifs was deleted. We found that deletion of any of the three PPR motifs in the NTE domain does not affect respiratory growth at normal temperature, and it results in a moderate decrease in mtDNA stability. Steady-state levels of COX1 and COX2 mRNAs are also moderately affected. Only the deletion of the second motif results in a partial respiratory deficiency, manifested only at elevated temperature. Our results thus indicate that the PPR motifs do not play an essential role in the function of the NTE domain of the mitochondrial RNA polymerase.
核心线粒体RNA聚合酶是一种单亚基酶,在酿酒酵母中由核基因RPO41编码。它是噬菌体RNA聚合酶的进化后代,但包含一个额外的非保守N端延伸(NTE)结构域,这是细胞器酶所特有的。该结构域介导聚合酶与辅助调节因子之间的相互作用,如酵母Sls1p和Nam1p。先前的研究表明,整个NTE结构域的缺失仅导致温度依赖性呼吸缺陷。在Rpo41p中通过计算机分析鉴定出几个与五肽重复(PPR)基序相关的序列,其中三个位于NTE结构域。PPR重复蛋白是一大类细胞器RNA结合因子,主要参与转录后基因表达机制。为了研究它们的功能,我们分析了携带Rpo41p变体的菌株的表型,其中每个基序都被删除。我们发现,NTE结构域中三个PPR基序中的任何一个被删除都不会影响正常温度下的呼吸生长,并且会导致线粒体DNA稳定性适度下降。COX1和COX2 mRNA的稳态水平也受到适度影响。只有第二个基序的缺失导致部分呼吸缺陷,仅在高温下表现出来。因此,我们的结果表明,PPR基序在线粒体RNA聚合酶NTE结构域的功能中不发挥重要作用。