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An auxiliary, membrane-based mechanism for nuclear migration in budding yeast

机译:基于膜的辅助膜机制,用于发芽酵母中的核迁移

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摘要

How nuclear shape correlates with nuclear movements during the cell cycle is poorly understood. We investigated changes in nuclear morphology during nuclear migration in budding yeast. In preanaphase cells, nuclear protrusions (nucleopodia [NP]) extend into the bud, preceding insertion of chromosomes into the bud neck. Surprisingly, formation of nucleopodia did not depend on the established nuclear migration pathways. We show that generation and maintenance of NP requires nuclear membrane expansion, actin, and the exocyst complex. Exocyst mutations cause nuclear positioning defects and display genetic interactions with mutations that deactivate astral microtubule-dependent nuclear migration. Cells that cannot perform DNA replication also fail to form nucleopodia. We propose that nuclear membrane expansion, DNA replication, and exocyst-dependent anchoring of the nuclear envelope to the bud affect nuclear morphology and facilitate correct positioning of nucleus and chromosomes relative to the cleavage apparatus.
机译:人们对细胞周期中核的形状与核运动的关系知之甚少。我们调查了在发芽酵母中的核迁移过程中核形态的变化。在前期细胞中,核突起(nucleopodia [NP])延伸到芽中,然后将染色体插入芽颈。出人意料的是,核足病的形成并不取决于已建立的核迁移途径。我们表明,NP的产生和维持需要核膜扩张,肌动蛋白和囊外复合物。外囊突变引起核定位缺陷,并显示与使星状微管依赖性核迁移失活的突变的遗传相互作用。无法执行DNA复制的细胞也无法形成核足病。我们建议核膜扩张,DNA复制和核包膜到芽囊的依赖囊外的锚定影响核形态,并促进相对于分裂装置的核和染色体的正确定位。

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