Li Christina, Goryaynov Alexander, Yang Weidong
a Department of Biology , Temple University , Philadelphia , PA , USA.
Nucleus. 2016 Sep 2;7(5):430-446. doi: 10.1080/19491034.2016.1238997. Epub 2016 Sep 27.
The nuclear pore complex (NPC) mediates the shuttle transport of macromolecules between the nucleus and cytoplasm in eukaryotic cells. The permeability barrier formed by intrinsically disordered phenylalanine-glycine-rich nucleoporins (FG-Nups) in the NPC functions as the critical selective control for nucleocytoplasmic transport. Signal-independent small molecules (< 40 kDa) passively diffuse through the pore, but passage of large cargo molecules is inhibited unless they are chaperoned by nuclear transport receptors (NTRs). NTRs are capable of interacting with FG-Nups and guide the cargos to cross the barrier by facilitated diffusion. The native conformation of the FG-Nups permeability barrier and the competition among multiple NTRs interacting with this barrier in the native NPCs are the 2 core questions still being highly debated in the field. Recently, we applied high-speed super-resolution fluorescence microscopy to map out the natural structure of the FG-Nups barrier and determined the competition among multiple NTRs as they interact with the barrier in the native NPCs. In this extra-view article, we will review the current understanding in the configuration and function of FG-Nups barrier and highlight the new evidence obtained recently to answer the core questions in nucleocytoplasmic transport.
核孔复合体(NPC)介导真核细胞中大分子在细胞核与细胞质之间的穿梭运输。NPC中由内在无序的富含苯丙氨酸 - 甘氨酸的核孔蛋白(FG-Nups)形成的渗透屏障,作为核质运输的关键选择性控制机制。信号非依赖性小分子(<40 kDa)可被动扩散通过核孔,但除非由核转运受体(NTRs)护送,否则大的货物分子的通过会受到抑制。NTRs能够与FG-Nups相互作用,并通过促进扩散引导货物穿过屏障。FG-Nups渗透屏障的天然构象以及多个NTRs在天然NPC中与该屏障相互作用时的竞争,是该领域仍在激烈争论的两个核心问题。最近,我们应用高速超分辨率荧光显微镜来描绘FG-Nups屏障的天然结构,并确定多个NTRs在与天然NPC中的屏障相互作用时的竞争情况。在这篇额外观点文章中,我们将回顾目前对FG-Nups屏障的结构和功能的理解,并强调最近获得的新证据,以回答核质运输中的核心问题。