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Yeast pentatricopeptide protein Dmr1 (Ccm1) binds a repetitive AU-rich motif in the small subunit mitochondrial ribosomal RNA

机译:酵母戊丙二肽蛋白DMR1(CCM1)在小亚基线粒体核糖体RNA中结合重复的富含富含的基序

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摘要

PPR proteins are a diverse family of RNA binding factors found in all Eukaryotic lineages. They perform multiple functions in the expression of organellar genes, mostly on the post-transcriptional level. PPR proteins are also significant determinants of evolutionary nucleo-organellar compatibility. Plant PPR proteins recognize their RNA substrates using a simple modular code. No target sequences recognized by animal or yeast PPR proteins were identified prior to the present study, making it impossible to assess whether this plant PPR code is conserved in other organisms. Dmr1p (Ccm1p, Ygr150cp) is a PPR protein essential for mitochondrial gene expression and involved in the stability of 15S ribosomal RNA. We demonstrate that in vitro Dmr1p specifically binds a motif composed of multiple AUA repeats occurring twice in the 15S rRNA sequence as the minimal 14 nt (AUA) AU or longer (AUA) variant. Short RNA fragments containing this motif are protected by Dmr1p from exoribonucleolytic activity in vitro. Presence of the identified motif in mtDNA of different yeast species correlates with the compatibility between their Dmr1p orthologs and mtDNA. RNA recognition by Dmr1p is likely based on a rudimentary form of a PPR code specifying U at every third position, and depends on other factors, like RNA structure.
机译:PPR蛋白是所有真核生物谱系中发现的不同RNA结合因子家族。它们在细胞细胞基因表达中进行多种功能,主要是在转录后水平。 PPR蛋白也是进化核细胞内容性的重要决定因素。植物PPR蛋白使用简单的模块化代码识别其RNA基板。在本研究之前发现了动物或酵母PPR蛋白识别的靶序列,使得不可能评估该植物PPR代码是否在其他生物中保守。 DMR1P(CCM1P,YGR150CP)是对线粒体基因表达的PPR蛋白,并且参与15S核糖体RNA的稳定性。我们证明体外DMR1P特异性地结合由15S rRNA序列中发生两次的多个Aua重复组成的基序,作为最小14nt(Aua)Au或更长(Aua)变体。含有该基序的短RNA片段由在体外的Exoribon核酸活性的DMR1P保护。不同酵母物种MTDNA中鉴定的基序的存在与其DMR1P直晶和MTDNA之间的相容性相关。 DMR1P的RNA识别可能基于在每个第三位指定U的PPR代码的基本形式,并且取决于其他因素,如RNA结构。

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