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Dual personality of Mad1

机译:Mad1的双重人格

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Nuclear transport is a dynamic process that can be modulated in response to changes in cellular physiology. We recently reported that the transport activity of yeast nuclear pore complexes (NPCs) is altered in response to kinetochore-microtubule (KT-MT) interaction defects. Specifically, KT detachment from MTs activates a signaling pathway that prevents the nuclear import of cargos by the nuclear transport factor Kap121p. This loss of Kap121p-mediated import is thought to influence the nuclear environment, including the phosphorylation state of nuclear proteins. A key regulator of this process is the spindle assembly checkpoint protein Mad1p. In response to unattached KTs, Mad1p dynamically cycles between NPCs and KTs. This cycling appears to induce NPC molecular rearrangements that prevent the nuclear import of Kap121p-cargo complexes. Here, we discuss the underlying mechanisms and the physiological relevance of Mad1p cycling and the inhibition of Kap121p-mediated nuclear import, focusing on outstanding questions within the pathway.
机译:核转运是一个动态过程,可以响应细胞生理变化进行调节。我们最近报道,响应于动线粒体-微管(KT-MT)相互作用缺陷,改变了酵母核孔复合物(NPC)的运输活动。具体而言,KT与MT的分离激活了一个信号通路,该信号通路阻止了核运输因子Kap121p的核进口。 Kap121p介导的导入的这种损失被认为会影响核环境,包括核蛋白的磷酸化状态。该过程的关键调节因子是纺锤体装配检查点蛋白Mad1p。响应于未附加的KT,Mad1p在NPC和KT之间动态循环。这种循环似乎诱导了NPC分子重排,从而阻止了Kap121p-货物复合物的核输入。在这里,我们讨论了Mad1p循环的潜在机制和生理相关性以及对Kap121p介导的核输入的抑制,重点是通路中的突出问题。

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