1999International Journal of Molecular MedicineRequires access

Amiloride and the Na(+)/H(+) exchanger protein: mechanism and significance of inhibition of the Na(+)/H(+) exchanger (review).

Carmen V. Harris, Larry Fliegel

Open publisher page 64 citations

Abstract

Amiloride and its derivatives are important tools for studying NHE-1, the ubiquitous isoform of the sodium/hydrogen exchanger protein family. Three residues in putative transmembrane domains IV and IX have been implicated in amiloride binding and several models of the proposed amiloride-binding site have been reported. Though it has been shown that sodium ions and amiloride molecules interact at unique regions of the NHE-1 protein, physiological experiments reveal a competitive relationship between the two under some circumstances. The two binding sites are thus on closely related but distinct regions on the protein.

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What this paper is about

Amiloride and its derivatives are important tools for studying NHE-1, the ubiquitous isoform of the sodium/hydrogen exchanger protein family. Three residues in putative transmembrane domains IV and IX have been implicated in amiloride binding and several models of the proposed amiloride-binding site have been reported. Though it has been shown that sodium ions and amiloride molecules interact at unique regions of the NHE-1 protein, physiological experiments reveal a competitive relationship between the two under some circumstances. The two binding sites are thus on closely related but distinct regions on the protein.

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Available abstract

Amiloride and its derivatives are important tools for studying NHE-1, the ubiquitous isoform of the sodium/hydrogen exchanger protein family. Three residues in putative transmembrane domains IV and IX have been implicated in amiloride binding and several models of the proposed amiloride-binding site have been reported. Though it has been shown that sodium ions and amiloride molecules interact at unique regions of the NHE-1 protein, physiological experiments reveal a competitive relationship between the two under some circumstances. The two binding sites are thus on closely related but distinct regions on the protein.

Key concepts: Amiloride, Sodium–hydrogen antiporter, Transmembrane protein, Chemistry, Gene isoform, Sodium, Biophysics, Binding site

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