ATP-linked sodium transport in Streptococcus faecalis. II. Energy coupling in everted membrane vesicles.
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference15 articles.
1. Energy coupling to potassium transport in Streptococcus faecalis. Interplay of ATP and the protonmotive force.
2. Cation/proton antiport systems in Escherichia coli: Properties of the sodium/proton antiporter
3. Cation/proton antiport systems in Escherichiacoli
4. Potassium transport in Escherichia coli: diverse systems with common control by osmotic forces
5. Energy-Coupling of the Transport System of Escherichia coli Dependent on Maltose-Binding Protein
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1. A novel method to quantify H+-ATPase-dependent Na+ transport across plasma membrane vesicles;Biochimica et Biophysica Acta (BBA) - Biomembranes;2007-09
2. Absence of Malolactic Activity Is a Characteristic of H + -ATPase-Deficient Mutants of the Lactic Acid Bacterium Oenococcus oeni;Applied and Environmental Microbiology;2003-04
3. Arginine Residue at Position 573 in Enterococcus hirae Vacuolar-type ATPase NtpI Subunit Plays a Crucial Role in Na+ Translocation;Journal of Biological Chemistry;2002-07
4. Evidence for Na + Influx via the NtpJ Protein of the KtrII K + Uptake System in Enterococcus hirae;Journal of Bacteriology;2000-05
5. Inorganic Cation Transport and Energy Transduction in Enterococcus hirae and Other Streptococci;Microbiology and Molecular Biology Reviews;1998-12
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