Valine 904, tyrosine 898, and cysteine 908 in Na,K-ATPase α subunits are important for assembly with β subunits

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Abstract

A 26-amino acid sequence in an extracellular loop of the Na,K-ATPase α subunit between membrane-spanning segments 7 and 8 has been shown to bind to the β subunit of Na,K-ATPase and to promote αβ assembly (Lemas, M.V., Hamrick, M., Takeyasu, K., and Farobrough, D. M. (1994) J. Biol. Chem. 269, 8255-8259) When this 26-amino acid sequence of the rat Na,K-ATPase α3 subunit was replaced by the corresponding sequence of the rat gastric H,K- ATPase α subunit, the chimeric subunit assembled preferentially with the rat gastric H,K-ATPase β subunit (Wang, S.-G., Eakle, K. A., Levenson, R., and Farley, R. A. (1997) Am. J. Physiol. 272, C923-C930). In the present study, these 26 amino acids (Asn886-Ala911) of rat Na,K-ATPase α3 were replaced by the corresponding amino acids Asn908-Ala933 of rat distal colon H,K-ATPase. Site-directed mutagenesis of the chimeric α subunits and Na,K-ATPase α3 showed that Val904, Tyr898, and Cys908 in the Na,K- ATPase α3 subunit are key residues in αβ subunit interactions. The V904Q mutation in Na,K-ATPase α3 reduced the B(max) for ouabain binding and the ATPase activity of α3β1 complexes by ~95%, and Y898R reduced the B(max) and ATPase activity by ~60%. The complementary mutations Q904V and R898Y increased the amount of ouabain bound by yeast membranes expressing the chimera with the colon H,K-ATPase sequence. The amount of ouabain bound by complexes assembled between Na,K-ATPase α3 containing the Y898R, C908G mutations and gastric H,K-ATPase β was less than 10% of wild type Na,K- ATPase α3 expressed with the same β subunit. The R898Y, G908C mutations in the chimeric α subunits also increased ouabain binding.

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Wang, S. G., & Farley, R. A. (1998). Valine 904, tyrosine 898, and cysteine 908 in Na,K-ATPase α subunits are important for assembly with β subunits. Journal of Biological Chemistry, 273(45), 29400–29405. https://doi.org/10.1074/jbc.273.45.29400

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