TY - JOUR
T1 - Adenosine A3 receptor is involved in ADP-induced microglial process extension and migration
AU - Ohsawa, Keiko
AU - Sanagi, Tomomi
AU - Nakamura, Yasuko
AU - Suzuki, Eri
AU - Inoue, Kazuhide
AU - Kohsaka, Shinichi
PY - 2012/4
Y1 - 2012/4
N2 - The extension of microglial processes toward injured sites in the brain is triggered by the stimulation of the purinergic receptor P2Y 12 by extracellular ATP. We recently showed that P2Y 12 stimulation by ATP induces microglial process extension in collagen gels. In the present study, we found that a P2Y 12 agonist, 2-methylthio-ADP (2MeSADP), failed to induce the process extension of microglia in collagen gels and that co-stimulation with adenosine, a phosphohydrolytic derivative of ATP, and 2MeSADP restored the chemotactic process extension. An adenosine A3 receptor (A3R)-selective agonist restored the chemotactic process extension, but other receptor subtype agonists did not. The removal of adenosine by adenosine deaminase and the blocking of A3R by an A3R-selective antagonist inhibited ADP-induced process extension. The A3R antagonist inhibited ADP-induced microglial migration, and an A3R agonist promoted 2MeSADP-stimulated migration. ADP and the A3R agonist activated Jun N-terminal kinase in microglia, and a Jun N-terminal kinase inhibitor inhibited the ADP-induced process extension. An RT-PCR analysis showed that A1R and A3R were expressed by microglia sorted from adult rat brains and that the A2AR expression level was very low. These results suggested that A3R signaling may be involved in the ADP-induced process extension and migration of microglia.
AB - The extension of microglial processes toward injured sites in the brain is triggered by the stimulation of the purinergic receptor P2Y 12 by extracellular ATP. We recently showed that P2Y 12 stimulation by ATP induces microglial process extension in collagen gels. In the present study, we found that a P2Y 12 agonist, 2-methylthio-ADP (2MeSADP), failed to induce the process extension of microglia in collagen gels and that co-stimulation with adenosine, a phosphohydrolytic derivative of ATP, and 2MeSADP restored the chemotactic process extension. An adenosine A3 receptor (A3R)-selective agonist restored the chemotactic process extension, but other receptor subtype agonists did not. The removal of adenosine by adenosine deaminase and the blocking of A3R by an A3R-selective antagonist inhibited ADP-induced process extension. The A3R antagonist inhibited ADP-induced microglial migration, and an A3R agonist promoted 2MeSADP-stimulated migration. ADP and the A3R agonist activated Jun N-terminal kinase in microglia, and a Jun N-terminal kinase inhibitor inhibited the ADP-induced process extension. An RT-PCR analysis showed that A1R and A3R were expressed by microglia sorted from adult rat brains and that the A2AR expression level was very low. These results suggested that A3R signaling may be involved in the ADP-induced process extension and migration of microglia.
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U2 - 10.1111/j.1471-4159.2012.07693.x
DO - 10.1111/j.1471-4159.2012.07693.x
M3 - Article
C2 - 22335470
AN - SCOPUS:84859635614
SN - 0022-3042
VL - 121
SP - 217
EP - 227
JO - Journal of Neurochemistry
JF - Journal of Neurochemistry
IS - 2
ER -