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Current Opinion in Genetics & Development|May 15, 2013
Positive and negative regulation of developmental signaling by the endocytic pathwayYoh Wada, Ge-Hong Sun-WadaScientific Reports|August 10, 2022
The a subunit isoforms of vacuolar-type proton ATPase exhibit differential distribution in mouse perigastrulation embryosGe-Hong Sun-Wada, Yoh WadaBiochimica Et Biophysica Acta|June 15, 2015
Role of vacuolar-type proton ATPase in signal transductionGe-Hong Sun-Wada, Yoh WadaHistology and Histopathology|October 2, 2010
Vacuolar-type proton pump ATPases: roles of subunit isoforms in physiology and pathologyGe-hong Sun-Wada, Yoh WadaBiological & Pharmaceutical Bulletin|October 2, 2022
Exploring the Link between Vacuolar-Type Proton ATPase and Epithelial Cell PolarityGe-Hong Sun-Wada, Yoh WadaHistology and Histopathology|March 6, 2013
Vacuolar-type proton pump ATPases: acidification and pathological relationshipsGe-Hong Sun-Wada, Yoh WadaBiochimica Et Biophysica Acta|July 30, 2004
Diverse and essential roles of mammalian vacuolar-type proton pump ATPase: toward the physiological understanding of inside acidic compartmentsGe-Hong Sun-Wada, Yoh Wada, Masamitsu FutaiJournal of Bioenergetics and Biomembranes|November 26, 2003
Vacuolar H+ pumping ATPases in luminal acidic organelles and extracellular compartments: common rotational mechanism and diverse physiological rolesGe-Hong Sun-Wada, Yoh Wada, Masamitsu FutaiScientific Reports|September 11, 2015
Loss of G2 subunit of vacuolar-type proton transporting ATPase leads to G1 subunit upregulation in the brainNobuyuki Kawamura, Ge-Hong Sun-Wada, Yoh WadaCell Structure and Function|January 28, 2004
Lysosome and lysosome-related organelles responsible for specialized functions in higher organisms, with special emphasis on vacuolar-type proton ATPaseGe-Hong Sun-Wada, Yoh Wada, Masamitsu FutaiPageof 8