Structural Analysis of the N-terminal Domain of Subunit a of the Yeast Vacuolar ATPase (V-ATPase) Using Accessibility of Single Cysteine Substitutions to Chemical Modification
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference58 articles.
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3. Regulation of the V-ATPase in kidney epithelial cells: dual role in acid–base homeostasis and vesicle trafficking;Brown;J. Exp. Biol,2009
4. V-ATPases in osteoclasts: Structure, function and potential inhibitors of bone resorption;Qin;Int. J. Biochem. Cell Biol,2012
5. Regulation of luminal acidification in the male reproductive tract via cell-cell crosstalk;Shum;J. Exp. Biol,2009
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1. Structural and functional understanding of disease-associated mutations in V-ATPase subunit a1 and other isoforms;Frontiers in Molecular Neuroscience;2023-07-03
2. Recent Insights into the Structure, Regulation, and Function of the V-ATPases;Trends in Biochemical Sciences;2015-10
3. Activity of Plasma Membrane V-ATPases Is Critical for the Invasion of MDA-MB231 Breast Cancer Cells;Journal of Biological Chemistry;2015-02
4. Loose Binding of the DF Axis with the A3B3 Complex Stimulates the Initial Activity of Enterococcus hirae V1-ATPase;PLoS ONE;2013-09-13
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