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Planta|November 14, 2013
Different properties of two types of auxin-binding sites in membranes from maize coleoptilesS Shimomura, N Inohara, T Fukui, et al.
Archives of Biochemistry and Biophysics|April 1, 1991
Vanadate-sensitive ATPase from chromaffin granule membranes formed a phosphoenzyme intermediate and was activated by phosphatidylserineY Moriyama, N Nelson, M Maeda, et al.
The Journal of Biological Chemistry|June 9, 1995
The ATP synthase gamma subunit. Suppressor mutagenesis reveals three helical regions involved in energy couplingR K Nakamoto, M K al-Shawi, M Futai
The Journal of Biological Chemistry|February 15, 1993
Domains near ATP gamma phosphate in the catalytic site of H+-ATPase. Model proposed from mutagenesis and inhibitor studiesA Iwamoto, M Y Park, M Maeda, et al.
Archives of Biochemistry and Biophysics|September 1, 1985
Deletion of seven amino acid residues from the gamma subunit of Escherichia coli H+-ATPase causes total loss of F1 assembly on membranesH Kanazawa, H Hama, B P Rosen, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 15, 1993
Gastric DNA-binding proteins recognize upstream sequence motifs of parietal cell-specific genesS Tamura, X H Wang, M Maeda, et al.
Biochimica Et Biophysica Acta|June 12, 1975
Formation of phagolysosomes containing dextran and Triton WR 1339 in mouse liverP K Tsung, M Futai, S Ohkuma, et al.
The Journal of Biological Chemistry|October 15, 1992
F0F1-ATPase gamma subunit mutations perturb the coupling between catalysis and transportK Shin, R K Nakamoto, M Maeda, et al.
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