Liashkovich Ivan, Pasrednik Dzmitry, Prystopiuk Valeria, Rosso Gonzalo, Oberleithner Hans, Shahin Victor
Institute of Physiology II, Robert-Koch-Str. 27b, 48149 Münster, Germany.
Sci Rep. 2015 May 6;5:9994. doi: 10.1038/srep09994.
Existence of a selective nucleocytoplasmic permeability barrier is attributed to Phenylalanine-Glycine rich proteins (FG-nups) within the central channel of the nuclear pore complex (NPC). Limited understanding of the FG-nup structural arrangement hinders development of strategies directed at disrupting the NPC permeability barrier. In this report we explore an alternative approach to enhancing the NPC permeability for exogenous macromolecules. We demonstrate that the recently discovered inhibitor of clathrin coat assembly Pitstop-2 compromises the NPC permeability barrier in a rapid and effective manner. Treatment with Pitstop-2 causes a collapse of the NPC permeability barrier and a reduction of Importin β binding accompanied by alteration of the NPC ultrastructure. Interestingly, the effects are induced by the same chemical agent that is capable of inhibiting clathrin-mediated endocytosis. To our knowledge, this is the first functional indication of the previously postulated evolutionary relation between clathrin and NPC scaffold proteins.
核孔复合体(NPC)中央通道内富含苯丙氨酸-甘氨酸的蛋白质(FG核孔蛋白)导致了选择性核质渗透屏障的存在。对FG核孔蛋白结构排列的有限了解阻碍了针对破坏NPC渗透屏障的策略的开发。在本报告中,我们探索了一种增强外源大分子NPC通透性的替代方法。我们证明,最近发现的网格蛋白包被组装抑制剂Pitstop-2以快速有效的方式损害NPC渗透屏障。用Pitstop-2处理会导致NPC渗透屏障崩溃,输入蛋白β结合减少,并伴有NPC超微结构的改变。有趣的是,这些效应是由能够抑制网格蛋白介导的内吞作用的同一化学试剂诱导的。据我们所知,这是先前假定的网格蛋白与NPC支架蛋白之间进化关系的首个功能指示。