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A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation

Polycystin-1 (PC-1, PKD1), a receptor-like protein expressed by the Pkd1 gene, is present in a wide variety of cell types, but its cellular location, signaling mechanisms, and physiological functions are poorly understood. Here, by studying tamoxifen-inducible, endothelial cell (EC)-specific Pkd1 kn...

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Autores principales: MacKay, Charles E, Floen, Miranda, Leo, M Dennis, Hasan, Raquibul, Garrud, Tessa AC, Fernández-Peña, Carlos, Singh, Purnima, Malik, Kafait U, Jaggar, Jonathan H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8933003/
https://www.ncbi.nlm.nih.gov/pubmed/35229718
http://dx.doi.org/10.7554/eLife.74765
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author MacKay, Charles E
Floen, Miranda
Leo, M Dennis
Hasan, Raquibul
Garrud, Tessa AC
Fernández-Peña, Carlos
Singh, Purnima
Malik, Kafait U
Jaggar, Jonathan H
author_facet MacKay, Charles E
Floen, Miranda
Leo, M Dennis
Hasan, Raquibul
Garrud, Tessa AC
Fernández-Peña, Carlos
Singh, Purnima
Malik, Kafait U
Jaggar, Jonathan H
author_sort MacKay, Charles E
collection PubMed
description Polycystin-1 (PC-1, PKD1), a receptor-like protein expressed by the Pkd1 gene, is present in a wide variety of cell types, but its cellular location, signaling mechanisms, and physiological functions are poorly understood. Here, by studying tamoxifen-inducible, endothelial cell (EC)-specific Pkd1 knockout (Pkd1 ecKO) mice, we show that flow activates PC-1-mediated, Ca(2+)-dependent cation currents in ECs. EC-specific PC-1 knockout attenuates flow-mediated arterial hyperpolarization and vasodilation. PC-1-dependent vasodilation occurs over the entire functional shear stress range and via the activation of endothelial nitric oxide synthase (eNOS) and intermediate (IK)- and small (SK)-conductance Ca(2+)-activated K(+) channels. EC-specific PC-1 knockout increases systemic blood pressure without altering kidney anatomy. PC-1 coimmunoprecipitates with polycystin-2 (PC-2, PKD2), a TRP polycystin channel, and clusters of both proteins locate in nanoscale proximity in the EC plasma membrane. Knockout of either PC-1 or PC-2 (Pkd2 ecKO mice) abolishes surface clusters of both PC-1 and PC-2 in ECs. Single knockout of PC-1 or PC-2 or double knockout of PC-1 and PC-2 (Pkd1/Pkd2 ecKO mice) similarly attenuates flow-mediated vasodilation. Flow stimulates nonselective cation currents in ECs that are similarly inhibited by either PC-1 or PC-2 knockout or by interference peptides corresponding to the C-terminus coiled-coil domains present in PC-1 or PC-2. In summary, we show that PC-1 regulates arterial contractility through the formation of an interdependent signaling complex with PC-2 in ECs. Flow stimulates PC-1/PC-2 clusters in the EC plasma membrane, leading to eNOS, IK channel, and SK channel activation, vasodilation, and a reduction in blood pressure.
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spelling pubmed-89330032022-03-19 A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation MacKay, Charles E Floen, Miranda Leo, M Dennis Hasan, Raquibul Garrud, Tessa AC Fernández-Peña, Carlos Singh, Purnima Malik, Kafait U Jaggar, Jonathan H eLife Neuroscience Polycystin-1 (PC-1, PKD1), a receptor-like protein expressed by the Pkd1 gene, is present in a wide variety of cell types, but its cellular location, signaling mechanisms, and physiological functions are poorly understood. Here, by studying tamoxifen-inducible, endothelial cell (EC)-specific Pkd1 knockout (Pkd1 ecKO) mice, we show that flow activates PC-1-mediated, Ca(2+)-dependent cation currents in ECs. EC-specific PC-1 knockout attenuates flow-mediated arterial hyperpolarization and vasodilation. PC-1-dependent vasodilation occurs over the entire functional shear stress range and via the activation of endothelial nitric oxide synthase (eNOS) and intermediate (IK)- and small (SK)-conductance Ca(2+)-activated K(+) channels. EC-specific PC-1 knockout increases systemic blood pressure without altering kidney anatomy. PC-1 coimmunoprecipitates with polycystin-2 (PC-2, PKD2), a TRP polycystin channel, and clusters of both proteins locate in nanoscale proximity in the EC plasma membrane. Knockout of either PC-1 or PC-2 (Pkd2 ecKO mice) abolishes surface clusters of both PC-1 and PC-2 in ECs. Single knockout of PC-1 or PC-2 or double knockout of PC-1 and PC-2 (Pkd1/Pkd2 ecKO mice) similarly attenuates flow-mediated vasodilation. Flow stimulates nonselective cation currents in ECs that are similarly inhibited by either PC-1 or PC-2 knockout or by interference peptides corresponding to the C-terminus coiled-coil domains present in PC-1 or PC-2. In summary, we show that PC-1 regulates arterial contractility through the formation of an interdependent signaling complex with PC-2 in ECs. Flow stimulates PC-1/PC-2 clusters in the EC plasma membrane, leading to eNOS, IK channel, and SK channel activation, vasodilation, and a reduction in blood pressure. eLife Sciences Publications, Ltd 2022-03-01 /pmc/articles/PMC8933003/ /pubmed/35229718 http://dx.doi.org/10.7554/eLife.74765 Text en © 2022, MacKay et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
MacKay, Charles E
Floen, Miranda
Leo, M Dennis
Hasan, Raquibul
Garrud, Tessa AC
Fernández-Peña, Carlos
Singh, Purnima
Malik, Kafait U
Jaggar, Jonathan H
A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
title A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
title_full A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
title_fullStr A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
title_full_unstemmed A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
title_short A plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
title_sort plasma membrane-localized polycystin-1/polycystin-2 complex in endothelial cells elicits vasodilation
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8933003/
https://www.ncbi.nlm.nih.gov/pubmed/35229718
http://dx.doi.org/10.7554/eLife.74765
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