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首页> 外文期刊>Journal of Cell Science >Sirtuin 7 promotes 45S pre-rRNA cleavage at site 2 and determines the processing pathway
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Sirtuin 7 promotes 45S pre-rRNA cleavage at site 2 and determines the processing pathway

机译:Sirtuin 7在部位2促进45s预rRNA切割并确定加工途径

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In humans, ribosome biogenesis mainly occurs in nucleoli following two alternative pre-rRNA processing pathways differing in the order in which cleavages take place but not by the sites of cleavage. To uncover the role of the nucleolar NAD(+)-dependent deacetylase sirtuin 7 in the synthesis of ribosomal subunits, pre-rRNA processing was analyzed after sirtinol-mediated inhibition of sirtuin 7 activity or depletion of sirtuin 7 protein. We thus reveal that sirtuin 7 activity is a critical regulator of processing of 45S, 32S and 30S pre-rRNAs. Sirtuin 7 protein is primarily essential to 45S pre-rRNA cleavage at site 2, which is the first step of processing pathway 2. Furthermore, we demonstrate that sirtuin 7 physically interacts with Nop56 and the GAR domain of fibrillarin, and propose that this could interfere with fibrillarin-dependent cleavage. Sirtuin 7 depletion results in the accumulation of 5' extended forms of 32S pre-rRNA, and also influences the localization of fibrillarin. Thus, we establish a close relationship between sirtuin 7 and fibrillarin, which might determine the processing pathway used for ribosome biogenesis.
机译:在人类中,核糖体生物发生主要发生在核仁中,在两种替代的前rRNA加工途径之后,在裂解裂解但不是由切割位点的顺序不同之后。为了在核糖体亚基的合成中揭示核仁NAD(+) - 依赖性脱乙酰酶Sirtuin 7的作用,在静脉介导的SIRTUIN 7活性或耗尽SIRTUIN 7蛋白的抑制后分析了预抗rRNA处理。因此,我们揭示了Sirtuin 7活性是45s,32s和30s预rRNA的临界调节器。 Sirtuin 7蛋白主要是在部位2的45s前rRNA切割,这是加工途径的第一步2.此外,我们证明了Sirtuin 7与NoP56和纤维素的少数群体相互作用,并提出这可能干扰用纤维素依赖性切割。 Sirtuin 7耗尽导致累积5'延长形式的32s前rRNA,也影响纤维素的定位。因此,我们建立了Sirtuin 7和Fibrillarin之间的密切关系,这可能确定用于核糖体生物发生的加工途径。

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