Multiple resistance and pH adaptation (Mrp) antiporters are multi-subunit Na+ (or K+)/H+ exchangers representing an ancestor of many essential redox-driven proton pumps, such as respiratory complex I. The mechanism of coupling between ion or electron transfer and proton translocation in this large protein family is unknown. Here, we present the structure of the Mrp complex from Anoxybacillus flavithermus solved by cryo-EM at 3.0 Å resolution. It is a dimer of seven-subunit protomers with 50 trans-membrane helices each. Surface charge distribution within each monomer is remarkably asymmetric, revealing probable proton and sodium translocation pathways. On the basis of the structure we propose a mechanism where the coupling between sodium and...
Complex I or NADH:quinone oxidoreductase is the largest enzyme complex, but the least understood ene...
Multiple Resistance and pH (Mrp) antiporters are seven-subunit complexes that couple transport of io...
The complex I subunits NuoL, NuoM and NuoN are homologous to two proteins, MrpA and MrpD, from one p...
Multiple resistance and pH adaptation (Mrp) antiporters are multi-subunit Na+ (or K+)/H+ exchangers ...
Mrp (Multi resistance and pH adaptation) are broadly distributed secondary active antiporters that c...
Multiple resistance and pH adaptation (Mrp) cation/proton antiporters are essential for growth of a ...
Complex I is the mitochondrial enzyme complex that oxidizes NADH produced in the citric acid cycle a...
Mrp (Multiple resistance and pH) antiporter was identified as a gene complementing an alkaline-sensi...
AbstractThe complex I subunits NuoL, NuoM and NuoN are homologous to two proteins, MrpA and MrpD, fr...
Membrane bound respiratory complex I is the key enzyme in the respiratory chains of bacteria and mit...
NADH:quinone oxidoreductase (Complex I) is the first enzyme of the respiratory chain and is involved...
In the aerobic respiratory chains of many organisms, complex I functions as the first electron input...
Respiratory complex I is a redox-driven proton pump contributing to about 40% of total proton motive...
Mitochondrial complex I, the largest and most complicated proton pump of the respiratory chain, link...
AbstractNADH:quinone oxidoreductase or complex I is a large membrane bound enzyme complex that has e...
Complex I or NADH:quinone oxidoreductase is the largest enzyme complex, but the least understood ene...
Multiple Resistance and pH (Mrp) antiporters are seven-subunit complexes that couple transport of io...
The complex I subunits NuoL, NuoM and NuoN are homologous to two proteins, MrpA and MrpD, from one p...
Multiple resistance and pH adaptation (Mrp) antiporters are multi-subunit Na+ (or K+)/H+ exchangers ...
Mrp (Multi resistance and pH adaptation) are broadly distributed secondary active antiporters that c...
Multiple resistance and pH adaptation (Mrp) cation/proton antiporters are essential for growth of a ...
Complex I is the mitochondrial enzyme complex that oxidizes NADH produced in the citric acid cycle a...
Mrp (Multiple resistance and pH) antiporter was identified as a gene complementing an alkaline-sensi...
AbstractThe complex I subunits NuoL, NuoM and NuoN are homologous to two proteins, MrpA and MrpD, fr...
Membrane bound respiratory complex I is the key enzyme in the respiratory chains of bacteria and mit...
NADH:quinone oxidoreductase (Complex I) is the first enzyme of the respiratory chain and is involved...
In the aerobic respiratory chains of many organisms, complex I functions as the first electron input...
Respiratory complex I is a redox-driven proton pump contributing to about 40% of total proton motive...
Mitochondrial complex I, the largest and most complicated proton pump of the respiratory chain, link...
AbstractNADH:quinone oxidoreductase or complex I is a large membrane bound enzyme complex that has e...
Complex I or NADH:quinone oxidoreductase is the largest enzyme complex, but the least understood ene...
Multiple Resistance and pH (Mrp) antiporters are seven-subunit complexes that couple transport of io...
The complex I subunits NuoL, NuoM and NuoN are homologous to two proteins, MrpA and MrpD, from one p...