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Phosphorylation of Nup98 by multiple kinases is crucial for NPC disassembly during mitotic entry

机译:Nup98被多种激酶磷酸化对于有丝分裂进入过程中的NPC拆卸至关重要

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Disassembly of nuclear pore complexes (NPCs) is a decisive event during mitotic entry in cells undergoing open mitosis, yet the molecular mechanisms underlying NPC disassembly are unknown. Using chemical inhibition and depletion experiments we show that NPC disassembly is a phosphorylation-driven process, dependent on CDK1 activity and supported by members of the NIMA-related kinase (Nek) family. We identify phosphorylation of the GLFG-repeat nucleoporin Nup98 as an important step in mitotic NPC disassembly. Mitotic hyperphosphorylation of Nup98 is accomplished by multiple kinases, including CDK1 and Neks. Nuclei carrying a phosphodeficient mutant of Nup98 undergo nuclear envelope breakdown slowly, such that both the dissociation of Nup98 from NPCs and the permeabilization of the nuclear envelope are delayed. Together, our data provide evidence for a phosphorylation-dependent mechanism underlying disintegration of NPCs during prophase. Moreover, we identify mitotic phosphorylation of Nup98 as a rate-limiting step in mitotic NPC disassembly.
机译:核孔复合物(NPC)的拆卸是经历开放有丝分裂的细胞在有丝分裂进入过程中的决定性事件,但NPC拆卸的分子机制尚不清楚。使用化学抑制和耗竭实验,我们显示NPC拆卸是一个磷酸化驱动的过程,取决于CDK1活性并受NIMA相关激酶(Nek)家族成员的支持。我们确定GLFG重复核孔蛋白Nup98的磷酸化是有丝分裂NPC拆卸的重要步骤。 Nup98的有丝分裂过度磷酸化是通过多种激酶来完成的,包括CDK1和Neks。携带磷酸化缺陷的Nup98突变体的核缓慢经历核被膜破裂,因此Nup98从NPC的解离和核被膜的通透性均被延迟。在一起,我们的数据提供了前阶段NPC崩解的磷酸化依赖性机制的证据。此外,我们确定Nup98的有丝分裂磷酸化作为有丝分裂NPC拆卸中的限速步骤。

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