We have studied the properties of band 3 in different glycophorin A (GPA)-deficient red cells. These red cells lack either both GPA and glycophorin B (GPB) (MkMk cells) or GPA (En(a-) cells) or contain a hybrid of GPA and GPB (MiV cells). Sulfate transport was reduced in all three red cell types to ∼60% of that in normal control red cells as a result of an increased apparent Km for sulfate. Transport of the monovalent anions iodide and chloride was also reduced. The reduced iodide transport resulted from a reduction in the Vmax for iodide transport. The anion transport site was investigated by measuring iodide fluorescence quenching of eosin-5-maleimide (EMA)-labeled band 3. The GPA-deficient cells had a normal Kd for iodide binding, in agreement with the unchanged Km found in transport studies. However, the apparent diffusion quenching constant (Kq) was increased, and the fluorescence polarization of band 3-bound EMA decreased in the variant cells, suggesting increased flexibility of the protein in the region of the EMA-binding site. This increased flexibility is probably associated with the decrease in V max observed for iodide transport. Our results suggest that band 3 in the red cell can take up two different structures: one with high anion transport activity when GPA is present and one with lower anion transport activity when GPA is absent.
CITATION STYLE
Bruce, L. J., Pan, R. J., Cope, D. L., Uchikawa, M., Gunn, R. B., Cherry, R. J., & Tanner, M. J. A. (2004). Altered Structure and Anion Transport Properties of Band 3 (AE1, SLC4A1) in Human Red Cells Lacking Glycophorin A. Journal of Biological Chemistry, 279(4), 2414–2420. https://doi.org/10.1074/jbc.M309826200
Mendeley helps you to discover research relevant for your work.