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The Structure and Function of the Na,K-ATPase Isoforms in Health and Disease

Frontiers in Physiology · 2017 · Vol. 8 · pp. 371–371
Michael V. ClausenFlorian HilbersHanne Poulsen

Abstract

The sodium and potassium gradients across the plasma membrane are used by animal cells for numerous processes, and the range of demands requires that the responsible ion pump, the Na,K-ATPase, can be fine-tuned to the different cellular needs. Therefore, several isoforms are expressed of each of the three subunits that make a Na,K-ATPase, the alpha, beta and FXYD subunits. This review summarizes the various roles and expression patterns of the Na,K-ATPase subunit isoforms and maps the sequence variations to compare the differences structurally. Mutations in the Na,K-ATPase genes encoding alpha subunit isoforms have severe physiological consequences, causing very distinct, often neurological diseases. The differences in the pathophysiological effects of mutations further underline how the kinetic parameters, regulation and proteomic interactions of the Na,K-ATPase isoforms are optimized for the individual cellular needs.

Ion Transport and Channel RegulationPancreatic function and diabetesMembrane-based Ion Separation TechniquesGene isoformATPaseProtein subunitP-type ATPaseFunction (biology)Cell biologyBiologyChemistryGeneBiochemistry

Funding

  • Lundbeckfonden
  • H. Lundbeck A/S
  • Aarhus Institute of Advanced Studies, Aarhus Universitet
Citations
511
FWCI
13.99
field-weighted impact
References
153
Percentile
99%
vs. same field & year
Citations per year
References
An Energy Budget for Signaling in the Grey Matter of the Brain
Journal of Cerebral Blood Flow & Metabolism · 2001 · 3,449 citations
Isozymes of the Na-K-ATPase: heterogeneity in structure, diversity in function
American Journal of Physiology-Renal Physiology · 1998 · 1,243 citations
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