The crystal structure of Escherichia coli NhaA determined at pH 4 has provided insights into the mechanism of activity of a pH-regulated Na+/H+ antiporter. However, because NhaA is activated at physiological pH (pH 5.5– 8.5), many questions related to the active state of NhaA have remained elusive. Our experimental results at physiological pH and computational analyses reveal that amino acid residues in transmembrane segment II contribute to the cation pathway of NhaA and its pH regulation: 1) transmembrane segment II is a highly conserved helix and the conserved amino acid residues are located on one side of the helix facing either the cytoplasmic or periplasmic funnels of NhaA structure. 2) Cys replacements of the conserved residues and m...
Using an electrophysiological assay the activity of NhaA was tested in a wide pH range from pH 5.0 t...
AbstractNa+/H+ antiporters are membrane proteins that play a major role in pH and Na+ homeostasis of...
pH and Na+ homeostasis in all cells requires Na+/H+ antiporters. The crystal structure, obtained at ...
The crystal structure of Escherichia coli NhaA determined at pH 4 has provided insights into the mec...
The crystal structure of Escherichia coli NhaA determined at pH 4 has provided insights into the mec...
Using an electrophysiological assay the activity of NhaA was tested in a wide pH range from pH 5.0 t...
Sodium proton antiporters are essential enzymes that catalyze the exchange of sodium ions for proton...
The Na+/H+ antiporters transport sodium (or several other monovalent cations) in exchange for H+ acr...
The Escherichia coli NhaA antiporter couples the transport of H+ and Na+ (or Li+) ions to maintain t...
pH and Na+ homeostasis in all cells requires Na+/H+ antiporters. The crystal structure, obtained at ...
The Escherichia coli NhaA antiporter couples the transport of H<sup>+</sup> and Na<sup>+</sup> (or L...
The crystal structure of NhaA Na+/H+ antiporter of Escherichia coli has provided a basis to explore ...
Data files to accompany the article in Nature Communications, in press.Escherichia coli NhaA is a pr...
Sodium proton antiporters are ubiquitous membrane proteins found in the cytoplasmic and organelle me...
AbstractThe crystal structure of NhaA Na+/H+ antiporter of Escherichia coli has provided a basis to ...
Using an electrophysiological assay the activity of NhaA was tested in a wide pH range from pH 5.0 t...
AbstractNa+/H+ antiporters are membrane proteins that play a major role in pH and Na+ homeostasis of...
pH and Na+ homeostasis in all cells requires Na+/H+ antiporters. The crystal structure, obtained at ...
The crystal structure of Escherichia coli NhaA determined at pH 4 has provided insights into the mec...
The crystal structure of Escherichia coli NhaA determined at pH 4 has provided insights into the mec...
Using an electrophysiological assay the activity of NhaA was tested in a wide pH range from pH 5.0 t...
Sodium proton antiporters are essential enzymes that catalyze the exchange of sodium ions for proton...
The Na+/H+ antiporters transport sodium (or several other monovalent cations) in exchange for H+ acr...
The Escherichia coli NhaA antiporter couples the transport of H+ and Na+ (or Li+) ions to maintain t...
pH and Na+ homeostasis in all cells requires Na+/H+ antiporters. The crystal structure, obtained at ...
The Escherichia coli NhaA antiporter couples the transport of H<sup>+</sup> and Na<sup>+</sup> (or L...
The crystal structure of NhaA Na+/H+ antiporter of Escherichia coli has provided a basis to explore ...
Data files to accompany the article in Nature Communications, in press.Escherichia coli NhaA is a pr...
Sodium proton antiporters are ubiquitous membrane proteins found in the cytoplasmic and organelle me...
AbstractThe crystal structure of NhaA Na+/H+ antiporter of Escherichia coli has provided a basis to ...
Using an electrophysiological assay the activity of NhaA was tested in a wide pH range from pH 5.0 t...
AbstractNa+/H+ antiporters are membrane proteins that play a major role in pH and Na+ homeostasis of...
pH and Na+ homeostasis in all cells requires Na+/H+ antiporters. The crystal structure, obtained at ...