Strain-specific variations in cation content and transport in mouse erythrocytes

Author:

Rivera Alicia1,Zee Robert Y. L.2,Alper Seth L.3,Peters Luanne L.4,Brugnara Carlo1

Affiliation:

1. Department of Laboratory Medicine, Children's Hospital, Harvard Medical School, Boston, Massachusetts;

2. Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts;

3. Divisions of Nephrology and Molecular and Vascular Medicine, Beth Israel Deaconess Medical Center; Department of Medicine, Harvard Medical School, Boston, Massachusetts; and

4. The Jackson Laboratory, Bar Harbor, Maine

Abstract

Studies of ion transport pathophysiology in hematological disorders and tests of possible new therapeutic agents for these disorders have been carried out in various mouse models because of close functional similarities between mouse and human red cells. We have explored strain-specific differences in erythrocyte membrane physiology in 10 inbred mouse strains by determining erythrocyte contents of Na+, K+, and Mg2+, and erythrocyte transport of ions via the ouabain-sensitive Na-K pump, the amiloride-sensitive Na-H exchanger (NHE1), the volume and chloride-dependent K-Cl cotransporter (KCC), and the charybdotoxin-sensitive Gardos channel (KCNN4). Our data reveal substantial strain-specific and sex-specific differences in both ion content and trans-membrane ion transport in mouse erythrocytes. These differences demonstrate the feasibility of identifying specific quantitative trait loci for erythroid ion transport and content in genetically standardized inbred mouse strains.

Publisher

American Physiological Society

Subject

Genetics,Physiology

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