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RNR1, a 3 '-5 ' exoribonuclease belonging to the RNR superfamily, catalyzes 3 ' maturation of chloroplast ribosomal RNAs in Arabidopsis thaliana

机译:RNR1,属于RNR超家族的3'-5'外切核酸酶,催化拟南芥叶绿体核糖体RNA的3'成熟。

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摘要

Arabidopsis thaliana chloroplasts contain at least two 3' to 5' exoribonucleases, polynucleotide phosphorylase (PNPase) and an RNase R homolog (RNR1). PNPase has been implicated in both mRNA and 23S rRNA 3' processing. However, the observed maturation defects do not affect chloroplast translation, suggesting that the overall role of PNPase in maturation of chloroplast rRNA is not essential. Here, we show that this role can be largely ascribed to RNR1, for which homozygous mutants germinate only on sucrose-containing media, and have white cotyledons and pale green rosette leaves. Accumulation of chloroplast-encoded mRNAs and tRNAs is unaffected in such mutants, suggesting that RNR1 activity is either unnecessary or redundant for their processing and turnover. However, accumulation of several chloroplast rRNA species is severely affected. High-resolution RNA gel blot analysis, and mapping of 5' and 3' ends, revealed that RNR1 is involved in the maturation of 23S, 16S and 5S rRNAs. The 3' extensions of the accumulating 5S rRNA precursors can be efficiently removed in vitro by purified RNR1, consistent with this view. Our data suggest that decreased accumulation of mature chloroplast ribosomal RNAs leads to a reduction in the number of translating ribosomes, ultimately compromising chloroplast protein abundance and thus plant growth and development.
机译:拟南芥叶绿体含有至少两个3'至5'外切核糖核酸酶,多核苷酸磷酸化酶(PNPase)和RNase R同源物(RNR1)。 PNPase已参与了mRNA和23S rRNA 3'加工。但是,观察到的成熟缺陷并不影响叶绿体翻译,这表明PNPase在叶绿体rRNA成熟中的总体作用不是必需的。在这里,我们显示此作用可以很大程度上归因于RNR1,其纯合突变体仅在含蔗糖的培养基上发芽,并具有白色的子叶和淡绿色的玫瑰花结叶。在这种突变体中,叶绿体编码的mRNA和tRNA的积累不受影响,这表明RNR1活性对于它们的加工和更新不是必需的就是多余的。但是,几种叶绿体rRNA物种的积累受到严重影响。高分辨率RNA凝胶印迹分析以及5'和3'末端的图谱显示,RNR1参与23S,16S和5S rRNA的成熟。与此观点一致,可以通过纯化的RNR1在体外有效去除积累的5S rRNA前体的3'延伸。我们的数据表明,成熟叶绿体核糖体RNA积累的减少导致翻译核糖体数量的减少,最终损害了叶绿体蛋白的丰度,进而损害了植物的生长发育。

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