TY - JOUR
T1 - Sustained depolarization and ADP-ribose activate a common ionic current in rat peritoneal macrophages
AU - Campo, Brice
AU - Surprenant, Annmarie
AU - North, R. Alan
PY - 2003/2/1
Y1 - 2003/2/1
N2 - Phagocytosis is associated with large changes in the membrane potential of macrophages, but the functional significance of this is unknown. Whole cell recordings were made from rat peritoneal macrophages. Sustained (>30 s) depolarization of the cells progressively activated a conductance that remained high (several nanoSeimens) for several tens of seconds. This current: 1) was linearly dependent on potential between -100 and +50 mV; 2) reversed close to 0 mV in a physiological external solution; 3) could also be carried in part by N-methyl-D-glucamine (PNMDG/PNa 0.7), chloride (PCl/PNa 0.5), or calcium (PCa/PNa 1.3); and 4) was blocked by intracellular ATP (5 mM) or ADP (10 mM) and by extracellular lanthanum (half-maximal concentration 1 mM). A current with all the same properties was recorded in cells when the intracellular solution contained ADP-ribose (10-300 μM) or β-NAD (1 mM) (but not any other nucleotide analogs tested). The results suggest that prolonged depolarization leads to an increased intracellular level of ADP-ribose, which in turn activates this nonselective conductance(s).
AB - Phagocytosis is associated with large changes in the membrane potential of macrophages, but the functional significance of this is unknown. Whole cell recordings were made from rat peritoneal macrophages. Sustained (>30 s) depolarization of the cells progressively activated a conductance that remained high (several nanoSeimens) for several tens of seconds. This current: 1) was linearly dependent on potential between -100 and +50 mV; 2) reversed close to 0 mV in a physiological external solution; 3) could also be carried in part by N-methyl-D-glucamine (PNMDG/PNa 0.7), chloride (PCl/PNa 0.5), or calcium (PCa/PNa 1.3); and 4) was blocked by intracellular ATP (5 mM) or ADP (10 mM) and by extracellular lanthanum (half-maximal concentration 1 mM). A current with all the same properties was recorded in cells when the intracellular solution contained ADP-ribose (10-300 μM) or β-NAD (1 mM) (but not any other nucleotide analogs tested). The results suggest that prolonged depolarization leads to an increased intracellular level of ADP-ribose, which in turn activates this nonselective conductance(s).
UR - https://www.scopus.com/pages/publications/0037309154
M3 - Article
C2 - 12538672
SN - 1550-6606
VL - 170
SP - 1167
EP - 1173
JO - Journal of Immunology
JF - Journal of Immunology
IS - 3
ER -