Identification of Ectodomain Regions Contributing to Gating, Deactivation, and Resensitization of Purinergic P2X Receptors
Open Access
- 4 August 2004
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 24 (31) , 6968-6978
- https://doi.org/10.1523/jneurosci.1471-04.2004
Abstract
The P2X receptors (P2XRs) are a family of ligand-gated channels activated by extracellular ATP through a sequence of conformational transitions between closed, open, and desensitized states. In this study, we examined the dependence of the activity of P2XRs on ectodomain structure and agonist potency. Experiments were done in human embryonic kidney 293 cells expressing rat P2X2aR, P2X2bR, and P2X3R, and chimeras having the V60-R180 or V60-F301 ectodomain sequences of P2X3R instead of the I66-H192 or I66-Y310 sequences of P2X2aR and P2X2bR. Chimeric P2X2a/V60-F301X3R and P2X2b/V60-F301X3R inherited the P2X3R ligand-selective profile, whereas the potency of agonists for P2X2a/V60-R180X3R was in between those observed at parental receptors. Furthermore, P2X2a/V60-F301X3R and P2X2a/V60-R180X3R desensitized in a P2X2aR-specific manner, and P2X2b/V60-F301X3R desensitized with rates comparable with those of P2X2bR. In striking contrast to parental receptors, the rates of decay in P2X2a/V60-F301X3R and P2X2b/V60-F301X3R currents after agonist withdrawal were 15- to 200-fold slower. For these chimeras, the decays in currents were not dependent on duration of stimuli and reflected both continuous desensitization and deactivation of receptors. Also, participation of deactivation in closure of channels inversely correlated with potency of agonists to activate receptors. The delay in deactivation was practically abolished in P2X2a/V60-R180X3R-expressing cells. However, the recovery from desensitization of P2X2a/V60-F301X3R and P2X2a/V60-R180X3R was similar and substantially delayed compared with that of parental receptors. These results indicate that both ectodomain halves participate in gating, but that the C and N halves influence the stability of open and desensitized conformation states, respectively, which in turn reflects on rates of receptor deactivation and resensitization.Keywords
This publication has 39 references indexed in Scilit:
- Release and extracellular metabolism of ATP by ecto-nucleotidase eNTPDase 1–2 in hypothalamic and pituitary cellsPurinergic Signalling, 2005
- Agonist‐dependence of recovery from desensitization of P2X3 receptors provides a novel and sensitive approach for their rapid up or downregulationBritish Journal of Pharmacology, 2004
- ATP Binding at Human P2X1 ReceptorsJournal of Biological Chemistry, 2004
- Desensitization Masks Nanomolar Potency of ATP for the P2X1 ReceptorPublished by Elsevier ,2004
- Histidine 140 Plays a Key Role in the Inhibitory Modulation of the P2X4 Nucleotide Receptor by Copper but Not ZincJournal of Biological Chemistry, 2003
- Heteromultimerization Modulates P2X Receptor Functions through Participating Extracellular and C-terminal SubdomainsPublished by Elsevier ,2002
- Functional evidence of distinct ATP activation sites at the human P2X7 receptorThe Journal of Physiology, 2001
- Contributions of the C-terminal Domain to the Control of P2X Receptor DesensitizationJournal of Biological Chemistry, 1999
- Modulatory activity of extracellular H+ and Zn2+ on ATP‐responses at rP2X1 and rP2X3 receptorsBritish Journal of Pharmacology, 1999
- Identification of a Site That Modifies Desensitization of P2X2ReceptorsBiochemical and Biophysical Research Communications, 1998