Primary Literature
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- Vasanthakumar T, et al. (2022) Coordinated conformational changes in the V<sub>1</sub> complex during V-ATPase reversible dissociation. Nat Struct Mol Biol 29(5) PMID: 35469063
- Jaskolka MC, et al. (2021) Defining steps in RAVE-catalyzed V-ATPase assembly using purified RAVE and V-ATPase subcomplexes. J Biol Chem 296:100703 PMID: 33895134
- Jaskolka MC, et al. (2021) RAVE and Rabconnectin-3 Complexes as Signal Dependent Regulators of Organelle Acidification. Front Cell Dev Biol 9:698190 PMID: 34249946
- Jaskolka MC and Kane PM (2020) Interaction between the yeast RAVE complex and Vph1-containing V<sub>o</sub> sectors is a central glucose-sensitive interaction required for V-ATPase reassembly. J Biol Chem 295(8):2259-2269 PMID: 31941791
- Zhang Z, et al. (2017) Characterization of the complex involved in regulating V-ATPase activity of the vacuolar and endosomal membrane. J Bioenerg Biomembr 49(5):347-355 PMID: 28643238
- Smardon AM, et al. (2015) Molecular Interactions and Cellular Itinerary of the Yeast RAVE (Regulator of the H+-ATPase of Vacuolar and Endosomal Membranes) Complex. J Biol Chem 290(46):27511-23 PMID: 26405040
- Smardon AM and Kane PM (2007) RAVE is essential for the efficient assembly of the C subunit with the vacuolar H(+)-ATPase. J Biol Chem 282(36):26185-94 PMID: 17623654
- Brace EJ, et al. (2006) Skp1p regulates Soi3p/Rav1p association with endosomal membranes but is not required for vacuolar ATPase assembly. Eukaryot Cell 5(12):2104-13 PMID: 17041187
- Sipos G, et al. (2004) Soi3p/Rav1p functions at the early endosome to regulate endocytic trafficking to the vacuole and localization of trans-Golgi network transmembrane proteins. Mol Biol Cell 15(7):3196-209 PMID: 15090613
- Smardon AM, et al. (2002) The RAVE complex is essential for stable assembly of the yeast V-ATPase. J Biol Chem 277(16):13831-9 PMID: 11844802
- Seol JH, et al. (2001) Skp1 forms multiple protein complexes, including RAVE, a regulator of V-ATPase assembly. Nat Cell Biol 3(4):384-91 PMID: 11283612