The known seven mammalian receptor subunits (P2X1–7) form cationic channels gated by ATP. Three subunits compose a receptor channel. Each subunit is a polypeptide consisting of two transmembrane regions (TM1 and TM2), intracellular N- and C-termini, and a bulky extracellular loop. Crystallization allowed the identification of the 3D structure and gating cycle of P2X receptors. The agonist-binding pocket is located at the intersection of two neighbouring subunits. In addition to the mammalian P2X receptors, their primitive ligand-gated counterparts with little structural similarity have also been cloned. Selective agonists for P2X receptor subtypes are not available, but medicinal chemistry supplied a range of subtype-selective antagonists, ...
Adenosine triphosphate (ATP), the source of metabolic energy for a majority of chemical reactions in...
The purinergic P2X receptors are ligand-gated cation channels activated by ATP and assembled as homo...
Fast purinergic neurotransmission has recently been shown to be mediated through ionotropic P2X rece...
The known seven mammalian receptor subunits (P2X1–7) form cationic channels gated by ATP. Three subu...
P2X receptors (nomenclature as agreed by the NC-IUPHAR Subcommittee on P2X Receptors [46, 134]) have...
Introduction: Purinergic P2X3-P2X2/3 receptors are placed in nociceptive neurons' strategic location...
P2 nucleotide receptors were proposed to consist of two subfamilies based on pharmacology in 1985, n...
The ATP-sensitive homomeric P2X7 receptor (P2X7R) has received particular attention as a potential d...
ATP is a well-known extracellular signalling molecule and neurotransmitter known to activate puriner...
P2X receptors are ATP-gated membrane ion channels with multifarious roles, including afferent sensat...
Introduction: Purinergic receptors play a critical role in neurotransmission, and modulation of comp...
P2X receptors for extracellular ATP (P2Xs) are widely distributed ion channels that mediate several ...
P2X receptors for extracellular ATP (P2Xs) are widely distributed ion channels that mediate several ...
P2X receptors for extracellular ATP (P2Xs) are widely distributed ion channels that mediate several ...
P2X receptors are a novel family of ligand-gated ion channels that open in response to the binding o...
Adenosine triphosphate (ATP), the source of metabolic energy for a majority of chemical reactions in...
The purinergic P2X receptors are ligand-gated cation channels activated by ATP and assembled as homo...
Fast purinergic neurotransmission has recently been shown to be mediated through ionotropic P2X rece...
The known seven mammalian receptor subunits (P2X1–7) form cationic channels gated by ATP. Three subu...
P2X receptors (nomenclature as agreed by the NC-IUPHAR Subcommittee on P2X Receptors [46, 134]) have...
Introduction: Purinergic P2X3-P2X2/3 receptors are placed in nociceptive neurons' strategic location...
P2 nucleotide receptors were proposed to consist of two subfamilies based on pharmacology in 1985, n...
The ATP-sensitive homomeric P2X7 receptor (P2X7R) has received particular attention as a potential d...
ATP is a well-known extracellular signalling molecule and neurotransmitter known to activate puriner...
P2X receptors are ATP-gated membrane ion channels with multifarious roles, including afferent sensat...
Introduction: Purinergic receptors play a critical role in neurotransmission, and modulation of comp...
P2X receptors for extracellular ATP (P2Xs) are widely distributed ion channels that mediate several ...
P2X receptors for extracellular ATP (P2Xs) are widely distributed ion channels that mediate several ...
P2X receptors for extracellular ATP (P2Xs) are widely distributed ion channels that mediate several ...
P2X receptors are a novel family of ligand-gated ion channels that open in response to the binding o...
Adenosine triphosphate (ATP), the source of metabolic energy for a majority of chemical reactions in...
The purinergic P2X receptors are ligand-gated cation channels activated by ATP and assembled as homo...
Fast purinergic neurotransmission has recently been shown to be mediated through ionotropic P2X rece...