Dog red cell membranes contain two distinct volume-sensitive transporters: swelling-activated K-Cl cotransport and shrinkage- activated Na/H exchange. Cells were prepared with intracellular salt concentration and weight percentage of cell water (%cw) varied independently by transient permeabilization of the cell membrane to cations. The dependence of transporter-mediated Na and K influxes upon %cw and upon extracellular salt concentration (c(ext)) was measured in cells so prepared. It was found that the critical value of %cw at which transporters are activated, called the set point, is similar for the two transporters, and that the set points for the two transporters decrease similarly with increasing extracellular salt concentration. These...
In response to osmotic perturbation, the Amphiuma red blood cell regulates volume back to "normal" l...
In response to osmotic perturbation, the Amphiuma red blood cell regulates volume back to "normal" l...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...
Dog red cell membranes contain two distinct volume-sensitive transporters: swelling-activated K-Cl c...
Chloride-dependent K transport ([K-Cl] cotransport) in dog red cells is activated by cell swelling. ...
Chloride-dependent K transport ([K-Cl] cotransport) in dog red cells is activated by cell swelling. ...
The large increase in passive Na flux that occurs when dog red blood cells are caused to shrink is a...
It is not known whether the activation of Na/H exchange by shrinkage in dog red cells is due to the ...
It is not known whether the activation of Na/H exchange by shrinkage in dog red cells is due to the ...
The large increase in passive Na flux that occurs when dog red blood cells are caused to shrink is a...
Cation-coupled chloride cotransporters play a key role in generating the Cl– electrochemical gradien...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...
Passive movements of Li in dog red blood cells (RBC) ar like those of Na and protons in being stimul...
Passive movements of Li in dog red blood cells (RBC) ar like those of Na and protons in being stimul...
In response to osmotic perturbation, the Amphiuma red blood cell regulates volume back to "normal" l...
In response to osmotic perturbation, the Amphiuma red blood cell regulates volume back to "normal" l...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...
Dog red cell membranes contain two distinct volume-sensitive transporters: swelling-activated K-Cl c...
Chloride-dependent K transport ([K-Cl] cotransport) in dog red cells is activated by cell swelling. ...
Chloride-dependent K transport ([K-Cl] cotransport) in dog red cells is activated by cell swelling. ...
The large increase in passive Na flux that occurs when dog red blood cells are caused to shrink is a...
It is not known whether the activation of Na/H exchange by shrinkage in dog red cells is due to the ...
It is not known whether the activation of Na/H exchange by shrinkage in dog red cells is due to the ...
The large increase in passive Na flux that occurs when dog red blood cells are caused to shrink is a...
Cation-coupled chloride cotransporters play a key role in generating the Cl– electrochemical gradien...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...
Passive movements of Li in dog red blood cells (RBC) ar like those of Na and protons in being stimul...
Passive movements of Li in dog red blood cells (RBC) ar like those of Na and protons in being stimul...
In response to osmotic perturbation, the Amphiuma red blood cell regulates volume back to "normal" l...
In response to osmotic perturbation, the Amphiuma red blood cell regulates volume back to "normal" l...
Swelling-Induced human erythrocyte K-Cl cotransport is membrane potential independent and capable of...