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The Journal of Biological Chemistry|September 18, 2015
Amino Acid Availability Modulates Vacuolar H+-ATPase AssemblyLaura A Stransky, Michael ForgacThe Journal of Biological Chemistry|May 16, 2020
AKT Ser/Thr kinase increases V-ATPase-dependent lysosomal acidification in response to amino acid starvation in mammalian cellsMichael P Collins, Laura A Stransky, Michael ForgacNature Reviews. Molecular Cell Biology|October 4, 2007
Vacuolar ATPases: rotary proton pumps in physiology and pathophysiologyMichael ForgacThe Journal of Biological Chemistry|May 22, 2008
Function and subunit interactions of the N-terminal domain of subunit a (Vph1p) of the yeast V-ATPaseJie Qi, Michael ForgacNature Reviews. Molecular Cell Biology|February 12, 2002
The vacuolar (H+)-ATPases--nature's most versatile proton pumpsTsuyoshi Nishi, Michael ForgacThe Journal of Biological Chemistry|September 10, 2004
Involvement of the nonhomologous region of subunit A of the yeast V-ATPase in coupling and in vivo dissociationElim Shao, Michael ForgacThe Journal of Biological Chemistry|June 14, 2005
Cysteine-mediated cross-linking indicates that subunit C of the V-ATPase is in close proximity to subunits E and G of the V1 domain and subunit a of the V0 domainTakao Inoue, Michael ForgacThe Journal of Biological Chemistry|June 15, 2007
Cellular environment is important in controlling V-ATPase dissociation and its dependence on activityJie Qi, Michael ForgacThe Journal of Biological Chemistry|October 22, 2008
The Ras/cAMP/protein kinase A pathway regulates glucose-dependent assembly of the vacuolar (H+)-ATPase in yeastSarah Bond, Michael ForgacThe Journal of Biological Chemistry|September 28, 2013
The function of vacuolar ATPase (V-ATPase) a subunit isoforms in invasiveness of MCF10a and MCF10CA1a human breast cancer cellsJoseph Capecci, Michael ForgacPageof 6