F. Wilkin et al., The P2Y(11) receptor mediates the ATP-induced maturation of human monocyte-derived dendritic cells, J IMMUNOL, 166(12), 2001, pp. 7172-7177
Recently, it has been shown that ATP and TNF-a synergize in the activation
and maturation of human dendritic cells (DC); the effect of ATP was reprodu
ced by hydrolysis-resistant derivatives of ATP and was blocked by suramin,
suggesting the involvement of a P2 receptor, but the particular subtype inv
olved was not identified. In this report we confirm that ATP and various de
rivatives synergize with TNF-a and LPS to induce the maturation of human mo
nocyte-derived DC, as revealed by up-regulation of the CD83 marker and the
secretion of IL-12. The rank order of potency of various analogs (AR-C67085
> adenosine 5 ' -O-(3-thiotriphosphate) = 2 '- and 3 ' -O-(4-benzoyl-benzo
yl) ATP > ATP > 2-methylthio-ATP) was close to that of the recombinant huma
n P2Y(11) receptor. Furthermore, these compounds activated cAMP production
in DC, in a xanthine-insensitive way, consistent with the involvement of th
e P2Y(11) receptor, which among P2Y subtypes has the unique feature of bein
g dually coupled to phospholipase C and adenylyl cyclase activation. The in
volvement of the P2Y(11)/cAMP/protein kinase A signaling pathway in the nuc
leotide-induced maturation of DC is supported by the inhibitory effect of H
89, a protein kinase A inhibitor. Taken together, our results demonstrate t
hat ATP activates DC through stimulation of the P2Y(11) receptor and subseq
uent increase in intracellular cAMP.