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Lamins position the nuclear pores and centrosomes by modulating dynein

机译:核纤层蛋白通过调节动力蛋白来定位核孔和中心体

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摘要

Lamins, the type V nuclear intermediate filament proteins, are reported to function in both interphase and mitosis. For example, lamin deletion in various cell types can lead to an uneven distribution of the nuclear pore complexes (NPCs) in the interphase nuclear envelope, whereas deletion of B-type lamins results in spindle orientation defects in mitotic neural progenitor cells. How lamins regulate these functions is unknown. Using mouse cells deleted of different combinations or all lamins, we show that lamins are required to prevent the aggregation of NPCs in the nuclear envelope near centrosomes in late G2 and prophase. This asymmetric NPC distribution in the absence of lamins is caused by dynein forces acting on NPCs via the dynein adaptor BICD2. We further show that asymmetric NPC distribution upon lamin depletion disrupts the distribution of BICD2 and p150 dynactin on the nuclear envelope at prophase, which results in inefficient dynein-driven centrosome separation during prophase. Therefore lamins regulate microtubule-based motor forces in vivo to ensure proper NPC distribution in interphase and centrosome separation in the mitotic prophase.
机译:据报道,Lamins是V型核中间丝蛋白,在相间和有丝分裂中均起作用。例如,各种细胞类型中的核纤层蛋白缺失会导致相间核被膜中核孔复合物(NPC)的分布不均,而B型核纤层蛋白的缺失会导致有丝分裂神经祖细胞的纺锤体定向缺陷。 lamins如何调节这些功能尚不清楚。使用删除了不同组合或所有层粘连蛋白的小鼠细胞,我们显示了层粘连蛋白是防止G2晚期和前期中心体附近核膜中NPC聚集所必需的。缺乏lamins的这种不对称NPC分布是由通过达因蛋白适配器BICD2作用于NPC的达因力引起的。我们进一步表明,层粘膜耗竭后不对称的NPC分布破坏了前期核膜上BICD2和p150动力蛋白的分布,从而导致前期动力蛋白驱动的中心体分离效率低下。因此,lamin调节体内基于微管的动力,以确保在有丝分裂前期的相间和中心体分离中适当的NPC分布。

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