Abstract

Three out of ∼30 nucleoporins, Nup62, Nup54, and Nup58, line the nuclear pore channel. These "channel" nucleoporins each contain an ordered region of ∼150-200 residues, which is predicted to be segmented into 3-4 α-helical regions of ∼40-80 residues. Notably, these segmentations are evolutionarily conserved between uni- and multicellular eukaryotes. Strikingly, the boundaries of these segments match our previously reported mapping and crystal data, which collectively identified two "cognate" segments of Nup54, each interacting with cognate segments, one in Nup58 and the other one in Nup62. Because Nup54 and Nup58 cognate segments form crystallographic hetero- or homo-oligomers, we proposed that these oligomers associate into inter-convertible "mid-plane" rings: a single large ring (40-50 nm diameter, consisting of eight hetero-dodecamers) or three small rings (10-20 nm diameter, each comprising eight homo-tetramers). Each "ring cycle" would recapitulate "dilation" and "constriction" of the nuclear pore complex's central transport channel. As for the Nup54·Nup62 interactome, it forms a 1:2 triple helix ("finger"), multiples of which project alternately up and down from mid-plane ring(s). Collectively, our previous crystal data suggested a copy number of 128, 64, and 32 for Nup62, Nup54, and Nup58, respectively, that is, a 4:2:1 stoichiometry. Here, we carried out solution analysis utilizing the entire ordered regions of Nup62, Nup54, and Nup58, and demonstrate that they form a dynamic "triple complex" that is heterogeneously formed from our previously characterized Nup54·Nup58 and Nup54·Nup62 interactomes. These data are consistent both with our crystal structure-deduced copy numbers and stoichiometries and also with our ring cycle model for structure and dynamics of the nuclear pore channel.

Highlights

  • The ordered region (ϳ150 –200 residues) of each channel nucleoporin is subdivided into segments of ϳ40 – 80 residues

  • Modular Segmentation of Channel Nucleoporins—The channel nups Nup62, Nup54, and Nup58 contain ordered regions of ϳ150 –200 residues and natively unfolded regions of up to ϳ300 residues that are marked by repeating phenylalanine-glycine (FG) motifs

  • We show that recombinant proteins form a dynamic mixture of heterogeneous complexes

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Summary

Background

The ordered region (ϳ150 –200 residues) of each channel nucleoporin is subdivided into segments of ϳ40 – 80 residues. Ulrich et al [7] arrived at this conclusion based on analytical ultracentrifugation studies of recombinant fragments comprising the entire ordered region of each of the three channel nucleoporins As these authors utilized only a single loading concentration instead of the multiple loading concentrations that are required for global modeling of multi-component systems to accurately determine equilibrium constants [12,13,14,15], their conclusions are flawed a priori. The previously detected interactomes [9, 11, 16] between segments of the ordered regions of the three channel nucleoporins are “canonical.” The data reported here provide further support for our “ring cycle” model for the molecular structure and dynamics of the central channel of the nuclear pore complex [9, 11]

Experimental Procedures
Results
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