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Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets

In this review, we focus on two attributes of P2X receptor channel function, one essential and one novel. First, we propose that P2X receptors are extracellular sensors as well as receptors and ion channels. In particular, the large extracellular domain (that comprises 70% of the molecular mass of t...

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Autores principales: Schwiebert, Erik M., Liang, Lihua, Cheng, Nai-Lin, Williams, Clintoria Richards, Olteanu, Dragos, Welty, Elisabeth A., Zsembery, Akos
Formato: Texto
Lenguaje:English
Publicado: Springer Netherlands 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2096558/
https://www.ncbi.nlm.nih.gov/pubmed/18404515
http://dx.doi.org/10.1007/s11302-005-0777-7
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author Schwiebert, Erik M.
Liang, Lihua
Cheng, Nai-Lin
Williams, Clintoria Richards
Olteanu, Dragos
Welty, Elisabeth A.
Zsembery, Akos
author_facet Schwiebert, Erik M.
Liang, Lihua
Cheng, Nai-Lin
Williams, Clintoria Richards
Olteanu, Dragos
Welty, Elisabeth A.
Zsembery, Akos
author_sort Schwiebert, Erik M.
collection PubMed
description In this review, we focus on two attributes of P2X receptor channel function, one essential and one novel. First, we propose that P2X receptors are extracellular sensors as well as receptors and ion channels. In particular, the large extracellular domain (that comprises 70% of the molecular mass of the receptor channel protein) lends itself to be a cellular sensor. Moreover, its exquisite sensitivity to extracellular pH, ionic strength, and multiple ligands evokes the function of a sensor. Second, we propose that P2X receptors are extracellular zinc receptors as well as receptors for nucleotides. We provide novel data in multiple publications and illustrative data in this invited review to suggest that zinc triggers ATP-independent activation of P2X receptor channel function. In this light, P2X receptors are the cellular site of integration between autocrine and paracrine zinc signaling and autocrine and paracrine purinergic signaling. P2X receptors may sense changes in these ligands as well as in extracellular pH and ionic strength and transduce these sensations via calcium and/or sodium entry and changes in membrane potential.
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spelling pubmed-20965582008-02-27 Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets Schwiebert, Erik M. Liang, Lihua Cheng, Nai-Lin Williams, Clintoria Richards Olteanu, Dragos Welty, Elisabeth A. Zsembery, Akos Purinergic Signal Review In this review, we focus on two attributes of P2X receptor channel function, one essential and one novel. First, we propose that P2X receptors are extracellular sensors as well as receptors and ion channels. In particular, the large extracellular domain (that comprises 70% of the molecular mass of the receptor channel protein) lends itself to be a cellular sensor. Moreover, its exquisite sensitivity to extracellular pH, ionic strength, and multiple ligands evokes the function of a sensor. Second, we propose that P2X receptors are extracellular zinc receptors as well as receptors for nucleotides. We provide novel data in multiple publications and illustrative data in this invited review to suggest that zinc triggers ATP-independent activation of P2X receptor channel function. In this light, P2X receptors are the cellular site of integration between autocrine and paracrine zinc signaling and autocrine and paracrine purinergic signaling. P2X receptors may sense changes in these ligands as well as in extracellular pH and ionic strength and transduce these sensations via calcium and/or sodium entry and changes in membrane potential. Springer Netherlands 2005-12-03 2005-12 /pmc/articles/PMC2096558/ /pubmed/18404515 http://dx.doi.org/10.1007/s11302-005-0777-7 Text en © Springer 2005
spellingShingle Review
Schwiebert, Erik M.
Liang, Lihua
Cheng, Nai-Lin
Williams, Clintoria Richards
Olteanu, Dragos
Welty, Elisabeth A.
Zsembery, Akos
Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets
title Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets
title_full Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets
title_fullStr Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets
title_full_unstemmed Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets
title_short Extracellular zinc and ATP-gated P2X receptor calcium entry channels: New zinc receptors as physiological sensors and therapeutic targets
title_sort extracellular zinc and atp-gated p2x receptor calcium entry channels: new zinc receptors as physiological sensors and therapeutic targets
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2096558/
https://www.ncbi.nlm.nih.gov/pubmed/18404515
http://dx.doi.org/10.1007/s11302-005-0777-7
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