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首页> 外文期刊>Molecular and Cellular Biology >The Pentatricopeptide Repeat Protein PPR5 Stabilizes a Specific tRNA Precursor in Maize Chloroplasts
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The Pentatricopeptide Repeat Protein PPR5 Stabilizes a Specific tRNA Precursor in Maize Chloroplasts

机译:五肽重复蛋白PPR5稳定玉米叶绿体中的特定tRNA前体

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Genes for pentatricopeptide repeat (PPR) proteins are found in all eukaryotic genomes analyzed but are particularly abundant in land plants. The majority of analyzed PPR proteins play a role in the processing or translation of organellar RNAs. Few PPR proteins have been studied in detail, and the functional repertoire and mechanisms of action of proteins in the PPR family are poorly understood. Here we analyzed a maize ortholog of the embryo-essential Arabidopsis thaliana gene AtPPR5. A genome-wide analysis of chloroplast RNAs that coimmunoprecipitate with Zea mays PPR5 (ZmPPR5) demonstrated that ZmPPR5 is bound in vivo to the unspliced precursor of trnG-UCC. Null and hypomorphic Zmppr5 insertion mutants are embryo viable but are deficient for chloroplast ribosomes and die as seedlings. These mutants show a dramatic decrease in both spliced and unspliced trnG-UCC RNAs, while the transcription of trnG-UCC is unaffected. These results, together with biochemical data documenting the sequence-specific binding of recombinant PPR5 to the trnG-UCC group II intron, suggest that PPR5 stabilizes the trnG-UCC precursor by directly binding and protecting an endonuclease-sensitive site. These findings add to the evidence that chloroplast-localized PPR proteins that are embryo essential in Arabidopsis typically function in the biogenesis of the plastid translation machinery.
机译:在所有分析的真核基因组中都发现了五肽重复序列(PPR)蛋白的基因,但在陆地植物中特别丰富。大多数分析的PPR蛋白在细胞器RNA的加工或翻译中都起作用。很少详细研究PPR蛋白质,并且对PPR家族中蛋白质的功能组成和作用机理了解甚少。在这里,我们分析了胚胎必需的拟南芥基因At PPR5 的玉米直系同源基因。与 Zea mays PPR5(ZmPPR5)共免疫沉淀的叶绿体RNA的全基因组分析表明,ZmPPR5在体内与 trnG -UCC的未剪接前体结合。 Zm ppr5 零位和亚同型插入突变体具有胚胎活力,但缺乏叶绿体核糖体并以幼苗死亡。这些突变体显示剪接和未剪接的 trnG -UCC RNA均显着减少,而 trnG -UCC的转录不受影响。这些结果,加上记录重组PPR5与 trnG -UCC II组内含子的序列特异性结合的生化数据,表明PPR5通过直接稳定 trnG -UCC前体结合并保护核酸内切酶敏感位点。这些发现增加了证据,证明拟南芥中至关重要的叶绿体定位的PPR蛋白通常在质体翻译机制的生物发生中起作用。

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