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P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets

Platelets express key receptors of the innate immune system such as FcγRIIa and Toll-like receptors (TLR). P2X1 cation channels amplify the platelet responses to several major platelet stimuli, particularly glycoprotein (GP)VI and TLR2/1, whereas their contribution to Src tyrosine kinase-dependent F...

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Autores principales: Ilkan, Zeki, Watson, Stephanie, Watson, Steve P., Mahaut-Smith, Martyn P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Schattauer GmbH 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6260114/
https://www.ncbi.nlm.nih.gov/pubmed/29443373
http://dx.doi.org/10.1160/TH17-07-0530
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author Ilkan, Zeki
Watson, Stephanie
Watson, Steve P.
Mahaut-Smith, Martyn P.
author_facet Ilkan, Zeki
Watson, Stephanie
Watson, Steve P.
Mahaut-Smith, Martyn P.
author_sort Ilkan, Zeki
collection PubMed
description Platelets express key receptors of the innate immune system such as FcγRIIa and Toll-like receptors (TLR). P2X1 cation channels amplify the platelet responses to several major platelet stimuli, particularly glycoprotein (GP)VI and TLR2/1, whereas their contribution to Src tyrosine kinase-dependent FcγRIIa receptors remains unknown. We investigated the role of P2X1 receptors during activation of FcγRIIa in human platelets, following stimulation by cross-linking of an anti-FcγRIIa monoclonal antibody (mAb) IV.3, or bacterial stimulation with Streptococcus sanguinis . Activation was assessed in washed platelet suspensions via measurement of intracellular Ca (2+) ([Ca (2+) ] (i) ) increases, ATP release and aggregation. P2X1 activity was abolished by pre-addition of α,β-meATP, exclusion of apyrase or the antagonist NF449. FcγRIIa activation evoked a robust increase in [Ca (2+) ] (i) (441 ± 33 nM at 30 μg/mL mAb), which was reduced to a similar extent (to 66–70% of control) by NF449, pre-exposure to α,β-meATP or apyrase omission, demonstrating a significant P2X1 receptor contribution. FcγRIIa activation-dependent P2X1 responses were partially resistant to nitric oxide (NO), but abrogated by 500 nM prostacyclin (PGI (2) ). Aggregation responses to bacteria and FcγRIIa activation were also inhibited by P2X1 receptor desensitization (to 66 and 42% of control, respectively). However, FcγRIIa-mediated tyrosine phosphorylation and ATP release were not significantly altered by the loss of P2X1 activity. In conclusion, we show that P2X1 receptors enhance platelet FcγRIIa receptor-evoked aggregation through an increase in [Ca (2+) ] (i) downstream of the initial tyrosine phosphorylation events and early dense granule release. This represents a further route whereby ATP-gated cation channels can contribute to platelet-dependent immune responses in vivo.
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spelling pubmed-62601142018-11-29 P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets Ilkan, Zeki Watson, Stephanie Watson, Steve P. Mahaut-Smith, Martyn P. Thromb Haemost Platelets express key receptors of the innate immune system such as FcγRIIa and Toll-like receptors (TLR). P2X1 cation channels amplify the platelet responses to several major platelet stimuli, particularly glycoprotein (GP)VI and TLR2/1, whereas their contribution to Src tyrosine kinase-dependent FcγRIIa receptors remains unknown. We investigated the role of P2X1 receptors during activation of FcγRIIa in human platelets, following stimulation by cross-linking of an anti-FcγRIIa monoclonal antibody (mAb) IV.3, or bacterial stimulation with Streptococcus sanguinis . Activation was assessed in washed platelet suspensions via measurement of intracellular Ca (2+) ([Ca (2+) ] (i) ) increases, ATP release and aggregation. P2X1 activity was abolished by pre-addition of α,β-meATP, exclusion of apyrase or the antagonist NF449. FcγRIIa activation evoked a robust increase in [Ca (2+) ] (i) (441 ± 33 nM at 30 μg/mL mAb), which was reduced to a similar extent (to 66–70% of control) by NF449, pre-exposure to α,β-meATP or apyrase omission, demonstrating a significant P2X1 receptor contribution. FcγRIIa activation-dependent P2X1 responses were partially resistant to nitric oxide (NO), but abrogated by 500 nM prostacyclin (PGI (2) ). Aggregation responses to bacteria and FcγRIIa activation were also inhibited by P2X1 receptor desensitization (to 66 and 42% of control, respectively). However, FcγRIIa-mediated tyrosine phosphorylation and ATP release were not significantly altered by the loss of P2X1 activity. In conclusion, we show that P2X1 receptors enhance platelet FcγRIIa receptor-evoked aggregation through an increase in [Ca (2+) ] (i) downstream of the initial tyrosine phosphorylation events and early dense granule release. This represents a further route whereby ATP-gated cation channels can contribute to platelet-dependent immune responses in vivo. Schattauer GmbH 2018-02 2018-01-29 /pmc/articles/PMC6260114/ /pubmed/29443373 http://dx.doi.org/10.1160/TH17-07-0530 Text en https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Ilkan, Zeki
Watson, Stephanie
Watson, Steve P.
Mahaut-Smith, Martyn P.
P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets
title P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets
title_full P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets
title_fullStr P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets
title_full_unstemmed P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets
title_short P2X1 Receptors Amplify FcγRIIa-Induced Ca (2+) Increases and Functional Responses in Human Platelets
title_sort p2x1 receptors amplify fcγriia-induced ca (2+) increases and functional responses in human platelets
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6260114/
https://www.ncbi.nlm.nih.gov/pubmed/29443373
http://dx.doi.org/10.1160/TH17-07-0530
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