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A Highlights from MBoC Selection: Compositional reorganization of the nucleolus in budding yeast mitosis

机译:来自MBOC选择的亮点:萌芽酵母菌病中核仁的组成重组

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The nucleolus is a membraneless organelle of the nucleus and the site of rRNA synthesis, maturation, and assembly into preribosomal particles. The nucleolus, organized around arrays of rRNA genes (rDNA), dissolves during prophase of mitosis in metazoans, when rDNA transcription ceases, and reforms in telophase, when rDNA transcription resumes. No such dissolution and reformation cycle exists in budding yeast, and the precise course of nucleolar segregation remains unclear. By quantitative live-cell imaging, we observed that the yeast nucleolus is reorganized in its protein composition during mitosis. Daughter cells received equal shares of preinitiation factors, which bind the RNA polymerase I promoter and the rDNA binding barrier protein Fob1, but only about one-third of RNA polymerase I and the processing factors Nop56 and Nsr1. The distribution bias was diminished in nonpolar chromosome segregation events observable in dyn1 mutants. Unequal distribution, however, was enhanced by defects in RNA polymerase I, suggesting that rDNA transcription supports nucleolar segregation. Indeed, quantification of pre-rRNA levels indicated ongoing rDNA transcription in yeast mitosis. These data, together with photobleaching experiments to measure nucleolar protein dynamics in anaphase, consolidate a model that explains the differential partitioning of nucleolar components in budding yeast mitosis.
机译:核仁是核的膜细胞器和RRNA合成,成熟的部位,以及组装成近戊骨颗粒。围绕RRNA基因(RDNA)阵列组织的核仁溶解在Metazoans的有丝分裂中,当RDNA转录和Telophase的改革时,当RDNA转录恢复时。没有这种溶解和改性循环存在于萌芽酵母中,并且核仁偏析的精确过程仍然不清楚。通过定量的活细胞成像,我们观察到酵母核仁在有丝分裂期间在其蛋白质组合物中重新组织。子细胞接受了相同份额的预突出因子,其结合RNA聚合酶I启动子和RDNA结合屏障蛋白FOB1,但仅约三分之一的RNA聚合酶I和加工因子NOP56和NSR1。在DYN1突变体中可观察到的非极性染色体分离事件中分布偏压。然而,不平等的分布通过RNA聚合酶I中的缺陷增强,表明RDNA转录支持核仁偏析。实际上,预rRNA水平的定量表明酵母菌病中的持续RDNA转录。这些数据与光博均衡实验一起测量后核蛋白动力学,巩固一个模型,该模型解释了芽孢菌组分在萌芽酵母菌病中的差异分配。

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