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1.
Biochem Biophys Res Commun ; 438(2): 295-300, 2013 Aug 23.
Artículo en Inglés | MEDLINE | ID: mdl-23896604

RESUMEN

Ion channel opening and desensitization is a fundamental process in neurotransmission. The ATP-gated P2X1 receptor (P2X1R) shows rapid and long-lasting desensitization upon agonist binding. This makes the electrophysiological investigation of its desensitization process, agonist unbinding, and recovery from desensitization a challenging task. Here, we show that the fluorescent agonist Alexa-647-ATP is a potent agonist at the P2X1R and a versatile tool to directly visualize agonist binding and unbinding. We demonstrate that the long-lasting desensitization of the P2X1R is due to both slow unbinding of agonist from the desensitized receptor and agonist mediated receptor internalization. Furthermore, the unbinding of the agonist Alexa-647-ATP from the desensitized receptor is accelerated in the continuous presence of competitive ligand. Modeling of our data indicates that three agonist molecules are required to drive the receptor into desensitization. Direct visualization of ligand unbinding from the desensitized receptor demonstrates the cooperativity of this process.


Asunto(s)
Adenosina Trifosfato/metabolismo , Carbocianinas/farmacología , Colorantes Fluorescentes/farmacología , Receptores Purinérgicos P2X1/metabolismo , Animales , Inhibidores Enzimáticos/farmacología , Oocitos/citología , Oocitos/metabolismo , Técnicas de Placa-Clamp , Unión Proteica , ARN Complementario/metabolismo , Ratas , Xenopus laevis
2.
Proc Natl Acad Sci U S A ; 109(28): 11396-401, 2012 Jul 10.
Artículo en Inglés | MEDLINE | ID: mdl-22745172

RESUMEN

P2X receptors (P2XRs) are ligand-gated ion channels activated by extracellular ATP. Although the crystal structure of the zebrafish P2X4R has been solved, the exact mode of ATP binding and the conformational changes governing channel opening and desensitization remain unknown. Here, we used voltage clamp fluorometry to investigate movements in the cysteine-rich head domain of the rat P2X1R (A118-I125) that projects over the proposed ATP binding site. On substitution with cysteine residues, six of these residues (N120-I125) were specifically labeled by tetramethyl-rhodamine-maleimide and showed significant changes in the emission of the fluorescence probe on application of the agonists ATP and benzoyl-benzoyl-ATP. Mutants N120C and G123C showed fast fluorescence decreases with similar kinetics as the current increases. In contrast, mutants P121C and I125C showed slow fluorescence increases that seemed to correlate with the current decline during desensitization. Mutant E122C showed a slow fluorescence increase and fast decrease with ATP and benzoyl-benzoyl-ATP, respectively. Application of the competitive antagonist 2',3'-O-(2,4,6-trinitrophenyl)-ATP (TNP-ATP) resulted in large fluorescence changes with the N120C, E122C, and G123C mutants and minor or no changes with the other mutants. Likewise, TNP-ATP-induced changes in control mutants distant from the proposed ATP binding site were comparably small or absent. Combined with molecular modeling studies, our data confirm the proposed ATP binding site and provide evidence that ATP orients in its binding site with the ribose moiety facing the solution. We also conclude that P2XR activation and desensitization involve movements of the cysteine-rich head domain.


Asunto(s)
Cisteína/química , Receptores Purinérgicos P2X1/metabolismo , Animales , Cationes , Membrana Celular/metabolismo , Cristalografía por Rayos X/métodos , ADN Complementario/metabolismo , Electrofisiología/métodos , Cinética , Maleimidas/química , Microscopía Fluorescente/métodos , Mutación , Oocitos/metabolismo , Unión Proteica , Estructura Terciaria de Proteína , Ratas , Rodaminas/química , Xenopus/metabolismo , Xenopus laevis/metabolismo
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