ION-CHANNEL EXPRESSION IN PMA-DIFFERENTIATED HUMAN THP-1 MACROPHAGES .3.

Citation
Te. Decoursey et al., ION-CHANNEL EXPRESSION IN PMA-DIFFERENTIATED HUMAN THP-1 MACROPHAGES .3., The Journal of membrane biology, 152(2), 1996, pp. 141-157
Citations number
87
Categorie Soggetti
Cell Biology",Biology,Physiology
ISSN journal
00222631
Volume
152
Issue
2
Year of publication
1996
Pages
141 - 157
Database
ISI
SICI code
0022-2631(1996)152:2<141:IEIPHT>2.0.ZU;2-U
Abstract
Ion channel expression was studied in THP-I human monocytic leukemia c ells induced to differentiate into macrophage-like cells by exposure t o the phorbol ester, phorbol 12-myristate 13-acetate (PMA). Inactivati ng delayed rectifier K+ currents, I-DR, present in almost all undiffer entiated THP-I monocytes, were absent from PMA-differentiated macropha ges. Two K+ channels were observed in THP-1 cells only after different iation into macrophages, an inwardly rectifying K+ channel (I-IR) and a Ca2+-activated maxi-K channel (I-BK). I-IR was a classical inward re ctifier, conducting large inward currents negative to E(K) and very sm all outward currents. I-IR was blocked in a voltage-dependent manner b y Cs+, Na+, and Ba2+, block increasing with hyperpolarization. Block b y Na+ and Ba2+ was time-dependent, whereas Cs+ block was too fast to r esolve. Rb+ was sparingly permeant. In cell-attached patches with high [K+] in the pipette, the single I-IR channel conductance was similar to 30 pS and no outward current could be detected. I-BK channels were observed in cell-attached or inside-out patches and in whole-cell conf iguration. In cell-attached patches the conductance was similar to 200 -250 pS and at potentials positive to similar to 100 mV a negative slo pe conductance of the unitary current was observed, suggesting block b y intracellular Na+. I-BK was activated at large positive potentials i n cell-attached patches; in inside-out patches the voltage-activation relationship was shifted to more negative potentials by increased [Ca2 +]. Macroscopic I-BK was blocked by external TEA(+) with half block at 0.35 mM. THP-1 cells were found to contain mRNA for Kv1.3 and IRK1. L evels of mRNA coding for these K+ channels were studied by competitive PCR (polymerase chain reaction), and were found to change upon differ entiation in the same direction as did channel expression: IRK1 mRNA i ncreased at least 5-fold, and Kv1.3 mRNA decreased on average 7-fold. Possible functional correlates of the changes in ion channel expressio n during differentiation of THP-1 cells are discussed.