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首页> 外文期刊>Nucleic acids research >Plant-specific ribosome biogenesis factors in Arabidopsis thaliana with essential function in rRNA processing
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Plant-specific ribosome biogenesis factors in Arabidopsis thaliana with essential function in rRNA processing

机译:拟南芥中植物特异性核糖体生物发生因子,在rRNA加工中具有重要作用

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rRNA processing and assembly of ribosomal proteins during maturation of ribosomes involve many ribosome biogenesis factors (RBFs). Recent studies identified differences in the set of RBFs in humans and yeast, and the existence of plant-specific RBFs has been proposed as well. To identify such plant-specific RBFs, we characterized T-DNA insertion mutants of 15 Arabidopsis thaliana genes encoding nuclear proteins with nucleotide binding properties that are not orthologues to yeast or human RBFs. Mutants of nine genes show an altered rRNA processing ranging from inhibition of initial 35S pre-rRNA cleavage to final maturation events like the 6S pre-rRNA processing. These phenotypes led to their annotation as ‘involved in rRNA processing’ - IRP. The irp mutants are either lethal or show developmental and stress related phenotypes. We identified IRPs for maturation of the plant-specific precursor 5′-5.8S and one affecting the pathway with ITS2 first cleavage of the 35S pre-rRNA transcript. Moreover, we realized that 5′-5.8S processing is essential, while a mutant causing 6S accumulation shows only a weak phenotype. Thus, we demonstrate the importance of the maturation of the plant-specific precursor 5′-5.8S for plant development as well as the occurrence of an ITS2 first cleavage pathway in fast dividing tissues.
机译:核糖体成熟过程中核糖体蛋白的rRNA加工和组装涉及许多核糖体生物发生因子(RBF)。最近的研究确定了人和酵母中RBF的集合存在差异,并且还提出了植物特异性RBF​​的存在。为了鉴定此类植物特异性RBF​​,我们表征了15个拟南芥基因的T-DNA插入突变体,这些基因编码的核蛋白具有与酵母或人RBF直系同源的核苷酸结合特性。 9个基因的突变体显示出rRNA加工的变化,从抑制35S pre-rRNA的最初切割到最终的成熟事件(如6S pre-rRNA的加工)。这些表型导致其注释为“涉及rRNA加工”-IRP。 irp突变体具有致死性,或表现出与发育和应激相关的表型。我们确定了IRPs,用于植物特异性前体5'-5.8S的成熟,以及一个用35S pre-rRNA转录本的ITS2首次裂解途径影响途径的IRP。此外,我们认识到5'-5.8S加工是必不可少的,而引起6S积累的突变体仅表现出弱表型。因此,我们证明了植物特异性前体5'-5.8S的成熟对于植物发育以及在快速分裂的组织中发生ITS2第一裂解途径的重要性。

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