bioRxiv · 10.1101/2021.05.06.443034
Coil-to-Helix Transition at the Nup358-BicD2 Interface for Dynein Recruitment and Activation
Abstract
Nup358, a nuclear pore protein, facilitates a nuclear positioning pathway that is essential for many biological processes, including neuromuscular and brain development. Nup358 binds and activates the auto-inhibited dynein adaptor Bicaudal D2 (BicD2), which in turn recruits and activates the dynein machinery to position the nucleus. However, the molecular details of the Nup358/BicD2 interaction remain poorly understood. Here, we show that a minimal Nup358 domain activates dynein/dynactin/BicD2 for processive motility on microtubules. Using nuclear magnetic resonance (NMR) titration and chemical exchange saturation transfer (CEST), a Nup358 helix encompassing residues 2162-2184 was identified, which transitioned from random coil to an -helix upon BicD2-binding and formed the core of the Nup358-BicD2 interface. Mutations in this region of Nup358 decreased the Nup358/BicD2 interaction, resulting in decreased dynein recruitment and impaired motility. BicD2 thus recognizes the cargo adaptor Nup358 though a "cargo recognition -helix", a structural feature that may stabilize BicD2 in its activated state and promote processive dynein motility.
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Gibson, J. M., Cui, H., Ali, M. Y., Zhao, X., Debler, E. W., Zhao, J., Trybus, K. M., Solmaz, S. R., Wang, C.. 2021-05-07. Coil-to-Helix Transition at the Nup358-BicD2 Interface for Dynein Recruitment and Activation. https://doi.org/10.1101/2021.05.06.443034
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