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A mechanism for asymmetric segregation of age during yeast budding

机译:酵母出芽期间年龄不对称分离的机制

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Ageing and the mortality that ensues are sustainable for the species only if age is reset in newborns. In budding yeast, buds are made young whereas ageing factors, such as carbonylated proteins and DNA circles, remain confined to the ageing mother cell. The mechanisms of this confinement and their relevance are poorly understood. Here we show that a septin-dependent, lateral diffusion barrier forms in the nuclear envelope and limits the translocation of pre-existing nuclear pores into the bud. The retention of DNA circles within the mother cell depends on the presence of the diffusion barrier and on the anchorage of the circles to pores mediated by the nuclear basket. In accordance with the diffusion barrier ensuring the asymmetric segregation of nuclear age-determinants, the barrier mutant bud6Δ fails to properly reset age in buds. Our data involve septin-dependent diffusion barriers in the confinement of ageing factors to one daughter cell during asymmetric cell division.
机译:仅当新生儿的年龄重置时,该物种的衰老和随之而来的死亡率才是可持续的。在发芽的酵母中,芽是年轻的,而衰老因子(例如羰基化的蛋白质和DNA环)仍然局限于衰老的母细胞中。对这种限制的机制及其相关性了解得很少。在这里,我们显示了依赖于Septin的横向扩散屏障在核膜中形成,并限制了预先存在的核孔向芽中的转移。 DNA圈在母细胞中的保留取决于扩散屏障的存在以及圈对由核篮介导的孔的锚定。根据确保核年龄决定因素不对称分离的扩散屏障,屏障突变体bud6Δ无法正确重置芽中的年龄。我们的数据涉及在不对称细胞分裂过程中将衰老因子限制在一个子细胞中的依赖于分离素的扩散障碍。

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