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1
Role of magnesium in the plasma membrane ATPase of red beet.
Plant Physiol. 1983 Apr;71(4):969-71. doi: 10.1104/pp.71.4.969.
3
Plasma membrane ATPase of red beet forms a phosphorylated intermediate.
Plant Physiol. 1983 Mar;71(3):507-12. doi: 10.1104/pp.71.3.507.
4
Intermediate reaction states of the red beet plasma membrane ATPase.
Arch Biochem Biophys. 1986 Jul;248(1):106-15. doi: 10.1016/0003-9861(86)90406-6.
6
Characterization of the solubilized plasma membrane ATPase of red beet.
Plant Physiol. 1984 Sep;76(1):26-30. doi: 10.1104/pp.76.1.26.

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4
Partial characterization of a phosphorylated intermediate associated with the plasma membrane ATPase of corn roots.
Proc Natl Acad Sci U S A. 1982 Nov;79(22):6922-6. doi: 10.1073/pnas.79.22.6922.
5
The proton-translocating ATPase of the fungal plasma membrane.
Biochim Biophys Acta. 1981 Dec 30;639(3-4):197-223. doi: 10.1016/0304-4173(81)90010-0.
6
Active calcium transport in human red cells.
Biochim Biophys Acta. 1980 Sep 30;604(2):159-90. doi: 10.1016/0005-2736(80)90573-8.
7
Enzyme-catalyzed phosphoryl transfer reactions.
Annu Rev Biochem. 1980;49:877-919. doi: 10.1146/annurev.bi.49.070180.004305.
8
The structure of proteins involved in active membrane transport.
Annu Rev Biophys Bioeng. 1980;9:259-91. doi: 10.1146/annurev.bb.09.060180.001355.
9
Energy coupling to ATP synthesis by the proton-translocating ATPase.
J Membr Biol. 1982;67(1):1-12. doi: 10.1007/BF01868643.

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