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The Journal of Biological Chemistry|September 10, 1981
Purification and immunological properties of proton-ATPase complexes from yeast and rat liver mitochondriaR Rott, N NelsonThe Journal of Biological Chemistry|June 15, 1988
Purification and properties of a vanadate- and N-ethylmaleimide-sensitive ATPase from chromaffin granule membranesY Moriyama, N NelsonBiochemistry|November 9, 1982
Proteolipid of adenosinetriphosphatase from yeast mitochondria forms proton-selective channels in planar lipid bilayersH Schindler, N NelsonJournal of Bioenergetics and Biomembranes|December 1, 1982
Properties of a novel ATPase enzyme in chromaffin granulesS Cidon, N NelsonJournal of Neurochemistry|March 1, 1995
Localization of glycine neurotransmitter transporter (GLYT2) reveals correlation with the distribution of glycine receptorF Jursky, N NelsonThe Journal of Biological Chemistry|February 25, 1989
Cold inactivation of vacuolar proton-ATPasesY Moriyama, N NelsonThe Journal of Biological Chemistry|November 5, 1989
H+-translocating ATPase in Golgi apparatus. Characterization as vacuolar H+-ATPase and its subunit structuresY Moriyama, N NelsonBiochimica Et Biophysica Acta|April 14, 1989
Lysosomal H+-translocating ATPase has a similar subunit structure to chromaffin granule H+-ATPase complexY Moriyama, N NelsonEarly Human Development|December 1, 1988
Blood exchange transfusions in newborns, the effect on serum ionized calciumN Nelson, O FinnströmBiochemical and Biophysical Research Communications|November 30, 1987
Internal anion binding site and membrane potential dominate the regulation of proton pumping by the chromaffin granule ATPaseY Moriyama, N NelsonPageof 125