bioRxiv · 10.1101/2021.11.10.468008
8 A structure of the nuclear ring of the Xenopus laevis nuclear pore complex solved by cryo-EM and AI
Abstract
The nuclear pore complex (NPC), one of the largest protein complexes in eukaryotes, serves as a physical gate to regulate nucleocytoplasmic transport. Here, we determined the 8 [A] resolution cryo-electron microscopic (cryo-EM) structure of the nuclear ring (NR) from the Xenopus laevis NPC, with local resolutions reaching 4.9 [A]. With the aid of AlphaFold2, we managed to build a pseudoatomic model of the NR, including the Y complexes and flanking components. In this most comprehensive and accurate model to date, the almost complete Y complex structure exhibits much tighter interaction in the hub region. Each NR asymmetric subunit contains two copies of Y complexes, one copy of Nup205 that connects the Y complexes to the neighbouring complex, one copy of ELYS that stabilizes the long arm region of the inner Y complex, and one copy of newly identified Nup93 that forms a bridge across the stems of Y complexes. These in-depth structural features represent a great advance in understanding the assembly of NPCs.
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Ren, H., Tai, L., Zhu, Y., Huang, X., Sun, F., Zhang, C.. 2021-11-11. 8 A structure of the nuclear ring of the Xenopus laevis nuclear pore complex solved by cryo-EM and AI. https://doi.org/10.1101/2021.11.10.468008
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