| Literature DB >> 29632243 |
Alessandro Berto1,2, Jinchao Yu3, Stéphanie Morchoisne-Bolhy1, Chiara Bertipaglia4, Richard Vallee4, Julien Dumont1, Francoise Ochsenbein3, Raphael Guerois3, Valérie Doye5.
Abstract
Cenp-F is a multifaceted protein implicated in cancer and developmental pathologies. The Cenp-F C-terminal region contains overlapping binding sites for numerous proteins that contribute to its functions throughout the cell cycle. Here, we focus on the nuclear pore protein Nup133 that interacts with Cenp-F both at nuclear pores in prophase and at kinetochores in mitosis, and on the kinase Bub1, known to contribute to Cenp-F targeting to kinetochores. By combining in silico structural modeling and yeast two-hybrid assays, we generate an interaction model between a conserved helix within the Nup133 β-propeller and a short leucine zipper-containing dimeric segment of Cenp-F. We thereby create mutants affecting the Nup133/Cenp-F interface and show that they prevent Cenp-F localization to the nuclear envelope, but not to kinetochores. Conversely, a point mutation within an adjacent leucine zipper affecting the kinetochore targeting of Cenp-F KT-core domain impairs its interaction with Bub1, but not with Nup133, identifying Bub1 as the direct KT-core binding partner of Cenp-F. Finally, we show that Cenp-E redundantly contributes together with Bub1 to the recruitment of Cenp-F to kinetochores.Entities:
Keywords: Cenp‐F; in silico modeling; kinetochores; mitosin; nuclear pore
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Year: 2018 PMID: 29632243 PMCID: PMC5934770 DOI: 10.15252/embr.201744742
Source DB: PubMed Journal: EMBO Rep ISSN: 1469-221X Impact factor: 8.807