Abstract
Extracellular nucleotides transmit signals into the cells through the P2 family of cell surface receptors. These receptors are amply expressed in human blood vessels and participate in vascular tone control; however, their signaling mechanisms remain unknown. Here we show that in smooth muscle cells of isolated human chorionic arteries, the activation of the P2Y(2) receptor (P2Y(2)R) induces not only its partition into membrane rafts but also its rapid internalization. Cholesterol depletion with methyl-beta-cyclodextrin reduced the association of the agonist-activated receptor into membrane rafts but did not affect either the UTP-mediated vasoconstrictions or the vasomotor responses elicited by both serotonin and KCl. Ex vivo perfusion of human chorionic artery segments with 1-10 mum UTP, a selective P2Y(2)R agonist, displaced the P2Y(2)R localization into membrane rafts within 1 min, a process preceded by the activation of both RhoA and Rac1 GTPases. AG1478, a selective and potent inhibitor of the epidermal growth factor receptor tyrosine kinase activity, not only blocked the UTP-induced vasomotor activity but also abrogated both RhoA and Rac1 activation, the P2Y(2)R association with membrane rafts, and its internalization. Altogether, these results show for the first time that the plasma membrane distribution of the P2Y(2)R is transregulated by the epidermal growth factor receptor, revealing an unsuspected functional interplay that controls both the membrane distribution and the vasomotor activity of the P2Y(2)R in intact human blood vessels.
Highlights
The plasma membrane (PM)4 nucleotide receptors of the P2Y (P2YR) family are all Gq or Gi protein-coupled receptors (GPCRs); this family is composed of eight members (P2YR1, P2YR2, P2YR4, P2YR6, and P2YR11–14) [1]
P2Y2 receptor (P2Y2R)-mediated Vasomotor Activity Is Dependent on the EGF1⁄7EGF receptor (EGFR)—To directly assess whether the vasomotor response elicited by P2Y2R activation involves EGFR signaling, we examined the contractile activity of UTP in human chorionic arteries (HCA) rings preapplied with AG1478
The inactive P2Y2R is excluded from membrane rafts of HCA-SMC; upon selective activation, nearly 50% of the receptor mass rapidly associates to these microdomains
Summary
The plasma membrane (PM)4 nucleotide receptors of the P2Y (P2YR) family are all Gq or Gi protein-coupled receptors (GPCRs); this family is composed of eight members (P2YR1, P2YR2, P2YR4, P2YR6, and P2YR11–14) [1]. We show that in smooth muscle cells of isolated human chorionic arteries, the activation of the P2Y2 receptor (P2Y2R) induces its partition into membrane rafts and its rapid internalization.
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