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Unusual degradation of alpha -beta complexes in Xenopus oocytes by beta -subunits of Xenopus gastric H-K-ATPase
Authors:Chen  Pei-Xian; Mathews  Paul M; Good  Peter J; Rossier  Bernard C; Geering  Kathi
Abstract:The catalytic alpha -subunit of oligomeric P-type ATPases such asNa-K-ATPase and H-K-ATPase requires association with a beta -subunit after synthesis in the endoplasmic reticulum (ER) to become stably expressed and functionally active. In this study, we have expressed thebeta -subunit of Xenopus gastricH-K-ATPase (beta HK) in Xenopus oocytes together with alpha -subunits of H-K-ATPase (alpha HK) or Na-K-ATPase (alpha NK) and have followed the biosynthesis, assembly, and cell surface expression of functional pumps. Immunoprecipitations ofXenopus beta HK from metabolicallylabeled oocytes show that it is well expressed and, when synthesizedwithout alpha -subunits, can leave the ER and become fully glycosylated.Xenopus beta HK can associate with both coexpressed alpha HK and alpha NK, but the alpha -beta complexes formed aredegraded rapidly in or close to the ER and do not produce functionalpumps at the cell surface as assessed by86Rb uptake. A possibleexplanation of these results is thatXenopus beta HK may contain atissue-specific signal that is important in the formation or correcttargeting of functional alpha -beta complexes in the stomach but thatcannot be recognized in Xenopusoocytes and in consequence leads to cellular degradation of the alpha -beta complexes in this experimental system.

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