Literature DB >> 24213245

Large cargo transport by nuclear pores: implications for the spatial organization of FG-nucleoporins.

Li-Chun Tu1, Guo Fu, Anton Zilman, Siegfried M Musser.   

Abstract

Nuclear pore complexes (NPCs) mediate cargo traffic between the nucleus and the cytoplasm of eukaryotic cells. Nuclear transport receptors (NTRs) carry cargos through NPCs by transiently binding to phenylalanine-glycine (FG) repeats on intrinsically disordered polypeptides decorating the NPCs. Major impediments to understand the transport mechanism are the thousands of FG binding sites on each NPC, whose spatial distribution is unknown, and multiple binding sites per NTR, which leads to multivalent interactions. Using single molecule fluorescence microscopy, we show that multiple NTR molecules are required for efficient transport of a large cargo, while a single NTR promotes binding to the NPC but not transport. Particle trajectories and theoretical modelling reveal a crucial role for multivalent NTR interactions with the FG network and indicate a non-uniform FG repeat distribution. A quantitative model is developed wherein the cytoplasmic side of the pore is characterized by a low effective concentration of free FG repeats and a weak FG-NTR affinity, and the centrally located dense permeability barrier is overcome by multivalent interactions, which provide the affinity necessary to permeate the barrier.

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Year:  2013        PMID: 24213245      PMCID: PMC3981140          DOI: 10.1038/emboj.2013.239

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  61 in total

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  44 in total

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Review 4.  The coming-of-age of nucleocytoplasmic transport in motor neuron disease and neurodegeneration.

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5.  Selective transport control on molecular velcro made from intrinsically disordered proteins.

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Review 7.  The selective permeability barrier in the nuclear pore complex.

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8.  Cytoplasmic Parvovirus Capsids Recruit Importin Beta for Nuclear Delivery.

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9.  Investigating molecular crowding within nuclear pores using polarization-PALM.

Authors:  Guo Fu; Li-Chun Tu; Anton Zilman; Siegfried M Musser
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10.  Bound-State Diffusion due to Binding to Flexible Polymers in a Selective Biofilter.

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