Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
Am J Physiol Cell Physiol
2008 Sep 01;2953:C752-60. doi: 10.1152/ajpcell.00228.2008.
Show Gene links
Show Anatomy links
P2X7 receptor-Pannexin1 complex: pharmacology and signaling.
Iglesias R
,
Locovei S
,
Roque A
,
Alberto AP
,
Dahl G
,
Spray DC
,
Scemes E
.
???displayArticle.abstract???
Pannexin 1 (Panx1), an ortholog to invertebrate innexin gap junctions, has recently been proposed to be the pore induced by P2X(7) receptor (P2X(7)R) activation. We explored the pharmacological action of compounds known to block gap junctions on Panx1 channels activated by the P2X(7)R and the mechanisms involved in the interaction between these two proteins. Whole cell recordings revealed distinct P2X(7)R and Panx1 currents in response to agonists. Activation of Panx1 currents following P2X(7)R stimulation or by membrane depolarization was blocked by Panx1 small-interfering RNA (siRNA) and with mefloquine > carbenoxolone > flufenamic acid. Incubation of cells with KN-62, a P2X(7)R antagonist, prevented current activation by 2'(3')-O-(4-benzoylbenzoyl)adenosine 5'-triphosphate (BzATP). Membrane permeabilization to dye induced by BzATP was also prevented by Panx1 siRNA and by carbenoxolone and mefloquine. Membrane permeant (TAT-P2X(7)) peptides, provided evidence that the Src homology 3 death domain of the COOH-terminus of the P2X(7)R is involved in the initial steps of the signal transduction events leading to Panx1 activation and that a Src tyrosine kinase is likely involved in this process. Competition assays indicated that 20 microM TAT-P2X(7) peptide caused 50% reduction in Src binding to the P2X(7)R complex. Src tyrosine phosphorylation following BzATP stimulation was reduced by KN-62, TAT-P2X(7) peptide, and by the Src tyrosine inhibitor PP2 and these compounds prevented both large-conductance Panx1 currents and membrane permeabilization. These results together with the lack Panx1 tyrosine phosphorylation in response to P2X(7)R stimulation indicate the involvement of an additional molecule in the tyrosine kinase signal transduction pathway mediating Panx1 activation through the P2X(7)R.
Adriouch,
Cutting edge: a natural P451L mutation in the cytoplasmic domain impairs the function of the mouse P2X7 receptor.
2002, Pubmed
Adriouch,
Cutting edge: a natural P451L mutation in the cytoplasmic domain impairs the function of the mouse P2X7 receptor.
2002,
Pubmed
Alves,
Are there functional gap junctions or junctional hemichannels in macrophages?
1996,
Pubmed
Bao,
Pannexin membrane channels are mechanosensitive conduits for ATP.
2004,
Pubmed
,
Xenbase
Baraldi,
Synthesis, biological activity and molecular modeling studies of 1,2,3,4-tetrahydroisoquinoline derivatives as conformationally constrained analogues of KN62, a potent antagonist of the P2X7-receptor containing a tyrosine moiety.
2002,
Pubmed
Baranova,
The mammalian pannexin family is homologous to the invertebrate innexin gap junction proteins.
2004,
Pubmed
Beyer,
Evidence that the gap junction protein connexin-43 is the ATP-induced pore of mouse macrophages.
1991,
Pubmed
Boassa,
Pannexin1 channels contain a glycosylation site that targets the hexamer to the plasma membrane.
2007,
Pubmed
Boassa,
Trafficking dynamics of glycosylated pannexin 1 proteins.
2008,
Pubmed
,
Xenbase
Bruzzone,
Pharmacological properties of homomeric and heteromeric pannexin hemichannels expressed in Xenopus oocytes.
2005,
Pubmed
,
Xenbase
Bruzzone,
Pannexins, a family of gap junction proteins expressed in brain.
2003,
Pubmed
,
Xenbase
Buisman,
Extracellular ATP induces a large nonselective conductance in macrophage plasma membranes.
1988,
Pubmed
Burnstock,
Purine and pyrimidine receptors.
2007,
Pubmed
Cockcroft,
ATP induces nucleotide permeability in rat mast cells.
1979,
Pubmed
Cruikshank,
Potent block of Cx36 and Cx50 gap junction channels by mefloquine.
2004,
Pubmed
da Cruz,
Activation of ERK1/2 by extracellular nucleotides in macrophages is mediated by multiple P2 receptors independently of P2X7-associated pore or channel formation.
2006,
Pubmed
Dahl,
Pannexin: to gap or not to gap, is that a question?
2006,
Pubmed
Denlinger,
Cutting edge: the nucleotide receptor P2X7 contains multiple protein- and lipid-interaction motifs including a potential binding site for bacterial lipopolysaccharide.
2001,
Pubmed
Faria,
Are second messengers crucial for opening the pore associated with P2X7 receptor?
2005,
Pubmed
Fortes,
Modulation of intercellular communication in macrophages: possible interactions between GAP junctions and P2 receptors.
2004,
Pubmed
Gordon,
Extracellular ATP: effects, sources and fate.
1986,
Pubmed
Huang,
Pannexin1 is expressed by neurons and glia but does not form functional gap junctions.
2007,
Pubmed
Huang,
The role of pannexin 1 hemichannels in ATP release and cell-cell communication in mouse taste buds.
2007,
Pubmed
Hung,
The P2X(7) receptor-mediated phospholipase D activation is regulated by both PKC-dependent and PKC-independent pathways in a rat brain-derived Type-2 astrocyte cell line, RBA-2.
2002,
Pubmed
Khakh,
P2X receptors as cell-surface ATP sensors in health and disease.
2006,
Pubmed
Kim,
Proteomic and functional evidence for a P2X7 receptor signalling complex.
2001,
Pubmed
Kim,
Differential assembly of rat purinergic P2X7 receptor in immune cells of the brain and periphery.
2001,
Pubmed
Klapperstück,
Functional evidence of distinct ATP activation sites at the human P2X(7) receptor.
2001,
Pubmed
,
Xenbase
Le Stunff,
The Pro-451 to Leu polymorphism within the C-terminal tail of P2X7 receptor impairs cell death but not phospholipase D activation in murine thymocytes.
2004,
Pubmed
Locovei,
Activation of pannexin 1 channels by ATP through P2Y receptors and by cytoplasmic calcium.
2006,
Pubmed
,
Xenbase
Locovei,
Pannexin 1 in erythrocytes: function without a gap.
2006,
Pubmed
,
Xenbase
Locovei,
Pannexin1 is part of the pore forming unit of the P2X(7) receptor death complex.
2007,
Pubmed
,
Xenbase
North,
Nucleotide receptors.
1997,
Pubmed
North,
Molecular physiology of P2X receptors.
2002,
Pubmed
Nuttle,
Differential activation of cation channels and non-selective pores by macrophage P2z purinergic receptors expressed in Xenopus oocytes.
1994,
Pubmed
,
Xenbase
Panchin,
A ubiquitous family of putative gap junction molecules.
2000,
Pubmed
Panchin,
Evolution of gap junction proteins--the pannexin alternative.
2005,
Pubmed
Pelegrin,
Pannexin-1 couples to maitotoxin- and nigericin-induced interleukin-1beta release through a dye uptake-independent pathway.
2007,
Pubmed
Pelegrin,
Pannexin-1 mediates large pore formation and interleukin-1beta release by the ATP-gated P2X7 receptor.
2006,
Pubmed
Penuela,
Pannexin 1 and pannexin 3 are glycoproteins that exhibit many distinct characteristics from the connexin family of gap junction proteins.
2007,
Pubmed
Petrou,
P2X7 purinoceptor expression in Xenopus oocytes is not sufficient to produce a pore-forming P2Z-like phenotype.
1997,
Pubmed
,
Xenbase
Scemes,
Connexin and pannexin mediated cell-cell communication.
2007,
Pubmed
Smart,
P2X7 receptor cell surface expression and cytolytic pore formation are regulated by a distal C-terminal region.
2003,
Pubmed
,
Xenbase
Spray,
Functional connexin "hemichannels": a critical appraisal.
2006,
Pubmed
Steinberg,
Extracellular ATP4- promotes cation fluxes in the J774 mouse macrophage cell line.
1987,
Pubmed
Stout,
Intercellular calcium signaling in astrocytes via ATP release through connexin hemichannels.
2002,
Pubmed
Suadicani,
P2X7 receptors mediate ATP release and amplification of astrocytic intercellular Ca2+ signaling.
2006,
Pubmed
Surprenant,
The cytolytic P2Z receptor for extracellular ATP identified as a P2X receptor (P2X7).
1996,
Pubmed
Tatham,
ATP-induced pore formation in the plasma membrane of rat peritoneal mast cells.
1990,
Pubmed
Virginio,
Effects of divalent cations, protons and calmidazolium at the rat P2X7 receptor.
1997,
Pubmed
Wang,
Modulation of membrane channel currents by gap junction protein mimetic peptides: size matters.
2007,
Pubmed
,
Xenbase
Ye,
Functional hemichannels in astrocytes: a novel mechanism of glutamate release.
2003,
Pubmed
Yen,
Gap junctional proteins of animals: the innexin/pannexin superfamily.
2007,
Pubmed