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Focal accumulation of preribosomes outside the nucleolus during metaphase-anaphase in budding yeast

机译:萌芽酵母中中期后核核心突出粒子的焦点

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Saccharomyces cerevisiae contains one nucleolus that remains intact in the mother-cell side of the nucleus throughout most of mitosis. Based on this, it is assumed that the bulk of ribosome production during cell division occurs in the mother cell. Here, we show that the ribosome synthesis machinery localizes not only in the nucleolus but also at a center that is present in the bud side of the nucleus after the initiation of mitosis. This center can be visualized by live microscopy as a punctate body located in close proximity to the nuclear envelope and opposite to the nucleolus. It contains ribosomal DNA (rDNA) and precursors of both 40S and 60S ribosomal subunits. Proteins that actively participate in ribosome synthesis, but not functionally defective variants, accumulate in that site. The formation of this body occurs in the metaphase-to-anaphase transition when discrete regions of rDNA occasionally exit the nucleolus and move into the bud. Collectively, our data unveil the existence of a previously unknown mechanism for preribosome accumulation at the nuclear periphery in budding yeast. We propose that this might be a strategy to expedite the delivery of ribosomes to the growing bud.
机译:Saccharomyces Cerevisiae含有一个在大部分有丝分裂中含有一个在核的母细胞侧保持完整的核仁。基于此,假设细胞分裂期间的核糖体产生的大部分产生在母细胞中。在这里,我们表明核糖体合成机械不仅在核仁中定位,而且在核心突出后存在于核芽侧的中心。该中心可以通过实时显微镜可视化,作为位于核心封闭和与核仁相对的点状体。它含有核糖体DNA(RDNA)和40s和60s核糖体亚基的前体。积极参与核糖体合成的蛋白质,但没有功能性缺陷的变体,在该部位积聚。当rDNA的离散区域偶尔离开核仁并进入芽时,发生这种体的形成在中期的后期转变中。集体,我们的数据揭示了先前未知机制,用于在萌芽酵母中核外周累积的常量积累。我们建议这可能是加快向生长芽递送核糖体的策略。

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