AbstractThe nature of the ammonium import into prokaryotes has been controversial. A systems biological approach makes us hypothesize that AmtB-mediated import must be active for intracellular NH4+ concentrations to sustain growth. Revisiting experimental evidence, we find the permeability assays reporting passive NH3 import inconclusive. As an inevitable consequence of the proposed NH4+ transport, outward permeation of NH3 constitutes a futile cycle. We hypothesize that the regulatory protein GlnK is required to fine-tune the active transport of ammonium in order to limit futile cycling whilst enabling an intracellular ammonium level sufficient for the cell’s nitrogen requirements
The Amt proteins are high affinity ammonium trans-porters that are conserved in all domains of life....
<p><b>A</b>) Top view of the trimer <i>Af</i>-GlnK3, highlighting the ligand binding sites between t...
Ammonia homeostasis is essential for the normal functioning of macro-and microorganisms. The change ...
AbstractThe nature of the ammonium import into prokaryotes has been controversial. A systems biologi...
The Amt proteins are high affinity ammonium transporters that are conserved in all domains of life. ...
Background: Microbial production of nitrogen containing compounds requires a high uptake flux and as...
The Escherichia coli AmtB protein is member of the ubiquitous Amt family of ammonium transporters. U...
The exchange of ammonium across cellular membranes is a fundamental process in all domains of life. ...
The Amt proteins are ammonium transporters that are conserved throughout all domains of life, being ...
Ammonium transport is mediated by membrane proteins of the ubiquitous Amt/Rh family Despite the avai...
AbstractThe conduction of ammonia/ammonium (NH3/NH4+) through the channel protein AmtB is inhibited ...
The conserved family of AMT/Rh proteins facilitates ammonium transport across animal, plant, and mic...
AMT (ammonium transporter)/Rh (Rhesus) ammonium transporters/channels are identified in all domains ...
Ammonium transport proteins belonging to the Amt family are ubiquitous in prokaryotes. In Escherichi...
In Corynebacterium glutamicum, a Gram-positive soil bacterium widely used in the industrial producti...
The Amt proteins are high affinity ammonium trans-porters that are conserved in all domains of life....
<p><b>A</b>) Top view of the trimer <i>Af</i>-GlnK3, highlighting the ligand binding sites between t...
Ammonia homeostasis is essential for the normal functioning of macro-and microorganisms. The change ...
AbstractThe nature of the ammonium import into prokaryotes has been controversial. A systems biologi...
The Amt proteins are high affinity ammonium transporters that are conserved in all domains of life. ...
Background: Microbial production of nitrogen containing compounds requires a high uptake flux and as...
The Escherichia coli AmtB protein is member of the ubiquitous Amt family of ammonium transporters. U...
The exchange of ammonium across cellular membranes is a fundamental process in all domains of life. ...
The Amt proteins are ammonium transporters that are conserved throughout all domains of life, being ...
Ammonium transport is mediated by membrane proteins of the ubiquitous Amt/Rh family Despite the avai...
AbstractThe conduction of ammonia/ammonium (NH3/NH4+) through the channel protein AmtB is inhibited ...
The conserved family of AMT/Rh proteins facilitates ammonium transport across animal, plant, and mic...
AMT (ammonium transporter)/Rh (Rhesus) ammonium transporters/channels are identified in all domains ...
Ammonium transport proteins belonging to the Amt family are ubiquitous in prokaryotes. In Escherichi...
In Corynebacterium glutamicum, a Gram-positive soil bacterium widely used in the industrial producti...
The Amt proteins are high affinity ammonium trans-porters that are conserved in all domains of life....
<p><b>A</b>) Top view of the trimer <i>Af</i>-GlnK3, highlighting the ligand binding sites between t...
Ammonia homeostasis is essential for the normal functioning of macro-and microorganisms. The change ...