Structural identification of the Vps18 β-propeller reveals a critical role in the HOPS complex stability and function

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Abstract

Membrane fusion at the vacuole, the lysosome equivalent in yeast, requires the HOPS tethering complex, which is recruited by the Rab7 GTPase Ypt7. HOPS provides a template for the assembly of SNAREs and thus likely confers fusion at a distinct position on vacuoles. Five of the six subunits in HOPS have a similar domain prediction with strong similarity to COPII subunits and nuclear porins. Here, we show that Vps18 indeed has a seven-bladed β-propeller as its N-terminal domain by revealing its structure at 2.14A˚. The Vps18 N-terminal domain can interact with the N-terminal part of Vps11 and also binds to lipids. Although deletion of the Vps18 N-terminal domain does not preclude HOPS assembly, as revealed by negative stain electron microscopy, the complex is instable and cannot support membrane fusion in vitro. We thus conclude that the β-propeller of Vps18 is required forHOPSstability and function and that it can serve as a starting point for further structural analyses of the HOPS tethering complex.

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Behrmann, H., Lürick, A., Kuhlee, A., Balderhaar, H. K., Bröcker, C., Kümmel, D., … Ungermann, C. (2014). Structural identification of the Vps18 β-propeller reveals a critical role in the HOPS complex stability and function. Journal of Biological Chemistry, 289(48), 33503–33512. https://doi.org/10.1074/jbc.M114.602714

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