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Endocrinology|November 1, 1986
Active calcium transport by porcine thyroid microsomesY Nakamura, T Miyamoto, M Koono, et al.The Journal of Endocrinology|August 1, 1990
Extracellular ATP-induced production of hydrogen peroxide in porcine thyroid cellsY Nakamura, S OhtakiEndocrinology|June 1, 1987
Calcium release from porcine thyroid microsomes by phosphatidylinositol 4,5-bisphosphate and inositol 1,4,5-trisphosphateY Nakamura, S OhtakiJournal of Biochemistry|October 1, 1988
Molecular mechanism of iodide transport by thyroid plasmalemmal vesicles: cooperative sodium activation and asymmetrical affinities for the ions on the outside and inside of the vesiclesY Nakamura, S Ohtaki, I YamazakiJournal of Biochemistry|November 1, 1987
Activation by ATP of calcium-dependent NADPH-oxidase generating hydrogen peroxide in thyroid plasma membranesY Nakamura, S Ogihara, S OhtakiThe Journal of Endocrinology|August 1, 1990
Transcellular iodide transport and iodination on the apical plasma membrane by monolayer porcine thyroid cells cultured on collagen-coated filtersY Nakamura, T Kotani, S OhtakiThe Journal of Clinical Endocrinology and Metabolism|September 1, 1986
Characterization of human thyroid peroxidase purified by monoclonal antibody-assisted chromatographyS Ohtaki, T Kotani, Y NakamuraBiochemistry|May 21, 1991
Mechanism of H2O2 production in porcine thyroid cells: evidence for intermediary formation of superoxide anion by NADPH-dependent H2O2-generating machineryY Nakamura, R Makino, T Tanaka, et al.The Journal of Biological Chemistry|March 25, 1989
Superoxide anion is the initial product in the hydrogen peroxide formation catalyzed by NADPH oxidase in porcine thyroid plasma membraneY Nakamura, S Ohtaki, R Makino, et al.British Journal of Experimental Pathology|February 1, 1988
Quantitative interactions in weight of lymphoid organs and steroid hormonal organs in hamsters under several experimental conditionsS OhtakiPageof 543