Biolayer interferometry of lipid nanodisc‐reconstituted yeast vacuolar H<sup>+</sup>‐ATPase

Stuti Sharma, Stephan Wilkens

Protein Science · 2017 · 31 citations · 46 references

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Abstract

Vacuolar H<sup>+</sup> -ATPase (V-ATPase) is a large, multisubunit membrane protein complex responsible for the acidification of subcellular compartments and the extracellular space. V-ATPase activity is regulated by reversible disassembly, resulting in cytosolic V<sub>1</sub> -ATPase and membrane-integral V<sub>0</sub> proton channel sectors. Reversible disassembly is accompanied by transient interaction with cellular factors and assembly chaperones. Quantifying protein-protein interactions involving membrane proteins, however, is challenging. Here we present a novel method to determine kinetic constants of membrane protein-protein interactions using biolayer interferometry (BLI). Yeast vacuoles are solubilized, vacuolar proteins are reconstituted into lipid nanodiscs with native vacuolar lipids and biotinylated membrane scaffold protein (MSP) followed by affinity purification of nanodisc-reconstituted V-ATPase (V<sub>1</sub> V<sub>0</sub> ND). We show that V<sub>1</sub> V<sub>0</sub> ND can be immobilized on streptavidin-coated BLI sensors to quantitate binding of a pathogen derived inhibitor and to measure the kinetics of nucleotide dependent enzyme dissociation.

References

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