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CDK1 and PLK1 coordinate the disassembly and reassembly of the nuclear envelope in vertebrate mitosis

机译:CDK1和PLK1协调脊椎动物有丝分裂中核膜的拆卸和重新组装

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摘要

Micronuclei (MN) arise from chromosomes or fragments that fail to be incorporated into the primary nucleus after cell division. These structures are a major source of genetic instability caused by DNA repair and replication defects coupled to aberrant Nuclear Envelope (NE). These problems ultimately lead to a spectrum of chromosome rearrangements called chromothripsis, a phenomenon that is a hallmark of several cancers. Despite its importance, the molecular mechanism at the origin of this instability is still not understood. Here we show that lagging chromatin, although it can efficiently assemble Lamin A/C, always fails to recruit Nuclear Pore Complexes (NPCs) proteins and that Polo-Like Kinase (PLK1) negatively regulates NPC assembly. We also provide evidence for the requirement of PLK1 activity for the disassembly of NPCs, but not Lamina A/C, at mitotic entry. Altogether this study reveals the existence of independent regulatory pathways for Lamin A/C and NPC reorganization during mitosis where Lamin A/C targeting to the chromatin is controlled by CDK1 activity (a clock-based model) while the NPC loading is also spatially monitored by PLK1.
机译:微核(MN)来自细胞分裂后无法整合到初级核中的染色体或片段。这些结构是由DNA修复和复制缺陷以及异常核包膜(NE)引起的遗传不稳定的主要来源。这些问题最终导致了一系列染色体重排,即所谓的染色体毛病,这种现象是几种癌症的标志。尽管它很重要,但仍不了解这种不稳定性起源的分子机理。在这里,我们显示落后的染色质虽然可以有效地组装Lamin A / C,但始终无法募集核孔复合物(NPC)蛋白,而Polo样激酶(PLK1)会对NPC组装产生负面影响。我们还提供了有丝分裂进入时需要PLK1活性才能拆卸NPC而不是层板A / C的证据。总的来说,这项研究揭示了有丝分裂期间Lamin A / C和NPC重组的独立调控途径的存在,其中针对Lamin A / C的染色质靶向作用是由CDK1活性控制的(基于时钟的模型),而NPC的装载量也可以通过空间监测PLK1。

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