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核孔复合体蛋白的功能与组装

Function and assembly of nuclear pore complex proteins.

作者信息

Bodoor K, Shaikh S, Enarson P, Chowdhury S, Salina D, Raharjo W H, Burke B

机构信息

Department of Cell Biology and Anatomy, University of Calgary, AB, Canada.

出版信息

Biochem Cell Biol. 1999;77(4):321-9.

Abstract

Nuclear pore complexes (NPCs) are extremely elaborate structures that mediate the bidirectional movement of macromolecules between the nucleus and cytoplasm. The current view of NPC organization features a massive symmetrical framework that is embedded in the double membranes of the nuclear envelope. It embraces a central channel of as yet ill-defined structure but which may accommodate particles with diameters up to 26 nm provided that they bear specific import/export signals. Attached to both faces of the central framework are peripheral structures, short cytoplasmic filaments, and a nuclear basket assembly, which interact with molecules transiting the NPC. The mechanisms of assembly and the nature of NPC structural intermediates are still poorly understood. However, mutagenesis and expression studies have revealed discrete sequences within certain NPC proteins that are necessary and sufficient for their appropriate targeting. In addition, some details are emerging from observations on cells undergoing mitosis where the nuclear envelope is disassembled and its components, including NPC subunits, are dispersed throughout the mitotic cytoplasm. At the end of mitosis, all of these components are reutilized to form nuclear envelopes in the two daughter cells. To date, it has been possible to define a time course of postmitotic assembly for a group of NPC components (CAN/Nup214, Nup153, POM121, p62 and Tpr) relative to the integral inner nuclear membrane protein LAP2 and the NPC membrane glycoprotein gp210. Nup153, a dynamic component of the nuclear basket, associates with chromatin towards the end of anaphase coincident with, although independent of, the inner nuclear membrane protein, LAP2. Assembly of the remaining proteins follows that of the nuclear membranes and occurs in the sequence POM121, p62, CAN/Nup214 and gp210/Tpr. Since p62 remains as a complex with three other NPC proteins (p58, p54, p45) during mitosis, and CAN/Nup214 maintains a similar interaction with its partner, Nup84, the relative timing of assembly of these additional four proteins may also be inferred. These observations suggest that there is a sequential association of NPC proteins with chromosomes during nuclear envelope reformation and the recruitment of at least eight of these precedes that of gp210. These findings support a model in which it is POM121 rather than gp210 that defines initial membrane-associated NPC assembly intermediates and which may therefore represent an essential component of the central framework of the NPC.

摘要

核孔复合体(NPCs)是极其精细的结构,介导大分子在细胞核与细胞质之间的双向移动。目前关于NPC组织的观点认为,其具有一个庞大的对称框架,该框架嵌入核膜的双层膜中。它包含一个结构尚不清楚的中央通道,但该通道可以容纳直径达26nm的颗粒,前提是这些颗粒带有特定的输入/输出信号。附着在中央框架两面的是周边结构、短的细胞质细丝和一个核篮组件,它们与通过NPC的分子相互作用。组装机制和NPC结构中间体的性质仍然知之甚少。然而,诱变和表达研究揭示了某些NPC蛋白内的离散序列,这些序列对于它们的正确定位是必要且充分的。此外,对处于有丝分裂过程中的细胞的观察也有了一些细节,在有丝分裂过程中核膜解体,其成分,包括NPC亚基,分散在整个有丝分裂细胞质中。在有丝分裂结束时,所有这些成分被重新利用,在两个子细胞中形成核膜。迄今为止,已经有可能确定一组NPC成分(CAN/Nup214、Nup153、POM121、p62和Tpr)相对于整合的内核膜蛋白LAP2和NPC膜糖蛋白gp210的有丝分裂后组装的时间进程。核篮的动态成分Nup153在后期结束时与染色质结合,这与内核膜蛋白LAP2同时发生,尽管与之无关。其余蛋白质的组装跟随核膜的组装,并且按照POM121、p62、CAN/Nup214和gp210/Tpr的顺序发生。由于p62在有丝分裂期间与其他三种NPC蛋白(p58、p54、p45)保持复合物形式,并且CAN/Nup214与其伙伴Nup84维持类似的相互作用,因此也可以推断这另外四种蛋白质组装的相对时间。这些观察结果表明,在核膜重塑过程中,NPC蛋白与染色体存在顺序关联,并且其中至少八种蛋白的募集先于gp210。这些发现支持了一种模型,即定义初始膜相关NPC组装中间体的是POM121而非gp210,因此POM121可能代表NPC中央框架的一个重要成分。

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