Peters Reiner
Institute of Medical Physics and Biophysics and Center of Nanotechnology (CeNTech), University of Muenster, Robert-Koch-Strasse 31, 48149 Muenster, Germany.
Traffic. 2005 May;6(5):421-7. doi: 10.1111/j.1600-0854.2005.00287.x.
Translocation through the nuclear pore complex (NPC), a large transporter spanning the nuclear envelope, is a passive, diffusion-driven process, paradoxically enhanced by binding. To account for this mystery, several models have been suggested. However, recent experiments with modified NPCs make reconsideration necessary. Here, we suggest that nuclear transport receptors (NTRs) such as the karyopherins, in accordance with their peculiar boat-like structure, act as nanoscopic ferries transporting cargos through the NPC by sliding on a surface of phenylalanine glycine (FG) motifs. The dense array of FG motifs that covers the cytoplasmic filaments of the NPC is thought to continue on the wall of the large channel permeating the central framework of the NPC and on parts of the nuclear filaments to yield a coherent FG surface. Nuclear transport receptors are assumed to bind to the FG surface at filaments or at the channel entrance and then to rapidly search the FG surface by a two-dimensional random walk for the channel exit where they are released. The passage of neutral molecules is restricted to a narrow tube in the center of the central channel by a loose network of peptide chains. The model features virtual gating, is compatible with but not dependent on FG affinity gradients and tolerates deletions and transpositions of FG motifs. Implications of the model are discussed and tests are suggested.
通过核孔复合体(NPC)进行的转运是一个被动的、由扩散驱动的过程,NPC是一种横跨核膜的大型转运体,矛盾的是,结合作用会增强这种转运。为了解释这个谜团,人们提出了几种模型。然而,最近对修饰后的NPC进行的实验使得重新考虑成为必要。在这里,我们认为核转运受体(NTRs),如核转运蛋白,根据其独特的船状结构,通过在苯丙氨酸-甘氨酸(FG)基序的表面滑动,充当纳米级渡船,将货物运输通过NPC。覆盖NPC细胞质细丝的密集FG基序阵列被认为在贯穿NPC中央框架的大通道壁上以及部分核细丝上继续存在,从而形成一个连贯的FG表面。核转运受体被假定在细丝处或通道入口处与FG表面结合,然后通过二维随机游走在FG表面快速搜索通道出口,在那里它们被释放。中性分子的通过受到中央通道中心一个由肽链组成的松散网络限制在一个狭窄的管道内。该模型具有虚拟门控功能,与FG亲和力梯度兼容但不依赖于FG亲和力梯度,并且能够容忍FG基序的缺失和转位。我们讨论了该模型的意义并提出了测试方法。