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Parvulin (Par14), a Peptidyl-Prolyl cis-trans Isomerase, Is a Novel rRNA Processing Factor That Evolved in the Metazoan Lineage*

机译:Parvulin(Par14),一种肽基脯氨酰 顺反异构酶,是一种新型的rRNA 后生世系中进化的加工因子*

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摘要

Although parvulin (Par14/eukaryotic parvulin homolog), a peptidyl-prolyl cis-trans isomerase, is found associated with the preribosomal ribonucleoprotein (pre-rRNP) complexes, its roles in ribosome biogenesis remain undetermined. In this study, we describe a comprehensive proteomics analysis of the Par14-associated pre-rRNP complexes using LC-MS/MS and a knockdown analysis of Par14. Together with our previous results, we finally identified 115 protein components of the complexes, including 39 ribosomal proteins and 54 potential trans-acting factors whose yeast homologs are found in the pre-rRNP complexes formed at various stages of ribosome biogenesis. We give evidence that, although Par14 exists in both the phosphorylated and unphosphorylated forms in the cell, only the latter form is associated with the pre-40 S and pre-60 S ribosomal complexes. We also show that Par14 co-localizes with the nucleolar protein B23 during the interphase and in the spindle apparatus during mitosis and that actinomycin D treatment results in the exclusion of Par14 from the nucleolus. Finally we demonstrate that knockdown of Par14 mRNA decelerates the processing of pre-rRNA to 18 and 28 S rRNAs. We propose that Par14 is a component of the pre-rRNA complexes and functions as an rRNA processing factor in ribosome biogenesis. As the amino acid sequence of Par14 including that in the amino-terminal pre-rRNP binding region is conserved only in metazoan homologs, we suggest that its roles in ribosome biogenesis have evolved in the metazoan lineage.
机译:尽管发现小白蛋白(Par14 /真核小白蛋白同源物)是一种肽基脯氨酰顺反异构酶,与核糖体前核糖核蛋白(pre-rRNP)复合物相关,但在核糖体生物发生中的作用仍未确定。在这项研究中,我们描述了使用LC-MS / MS对Par14相关的pre-rRNP复合物进行全面的蛋白质组学分析,并对Par14进行了击倒分析。与我们以前的结果一起,我们最终确定了复合物的115种蛋白质成分,包括39种核糖体蛋白和54种潜在的反式作用因子,其酵母同源物存在于核糖体生物发生各个阶段形成的pre-rRNP复合物中。我们提供的证据表明,尽管Par14在细胞中以磷酸化和非磷酸化形式存在,但只有后者与40 S之前和60 S之前的核糖体复合物相关。我们还显示,Par14与核仁蛋白B23在相间期和纺锤体有丝分裂期间共定位,并且放线菌素D处理导致从核仁中排除Par14。最后,我们证明了Par14 mRNA的敲低可将pre-rRNA的加工速度降低为18和28 S rRNA。我们建议Par14是r-RNA前体复合物的组成部分,并在核糖体生物发生中充当rRNA加工因子。由于Par14的氨基酸序列(包括在氨基末端rRNP结合区中的氨基酸)仅在后生同源物中是保守的,因此我们暗示其在核糖体生物发生中的作用已在后生谱系中进化。

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