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SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells

Because structural remodeling of several proteins, including ion channels, may underlie the abnormal action potentials of Purkinje cells (PCs) that survive in the 48 hr infarcted zone of the canine heart (IZPCs), we sought to determine the subcellular structure and function of the K(V)1.5 (KCNA5) pr...

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Detalles Bibliográficos
Autores principales: Dun, Wen, Wright, Patrick, Danilo, Peter, Mohler, Peter J., Boyden, Penelope A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4153673/
https://www.ncbi.nlm.nih.gov/pubmed/25184222
http://dx.doi.org/10.1371/journal.pone.0106830
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author Dun, Wen
Wright, Patrick
Danilo, Peter
Mohler, Peter J.
Boyden, Penelope A.
author_facet Dun, Wen
Wright, Patrick
Danilo, Peter
Mohler, Peter J.
Boyden, Penelope A.
author_sort Dun, Wen
collection PubMed
description Because structural remodeling of several proteins, including ion channels, may underlie the abnormal action potentials of Purkinje cells (PCs) that survive in the 48 hr infarcted zone of the canine heart (IZPCs), we sought to determine the subcellular structure and function of the K(V)1.5 (KCNA5) protein in single IZPCs. Clustering of the Kv1.5 subunit in axons is regulated by a synapse-associated protein, SAP97, and is linked to an actin-binding protein, cortactin, and an intercellular adhesion molecule, N-cadherin. To understand the functional remodeling of the Kv1.5 channel and its regulation in IZPCs, Kv1.5 currents in PCs were measured as the currents blocked by 10 µM RSD1379 using patch-clamp techniques. Immunocytochemistry and confocal imaging were used for both single and aggregated IZPCs vs normal PCs (NZPCs) to determine the relationship of Kv1.5 with SAP-97, cortactin and N-cadherin. In IZPCs, both the sarcolemma (SL) and intercalated disk (ID) Kv1.5 protein are abundant, and the amount of cytosolic Kv1.5 protein is greatly increased. SAP-97 is also increased at IDs and has notable cytosolic localization suggesting that SAP-97 may regulate the functional expression and stabilization of Kv1.5 channels in IZPCs. Cortactin, which is located with N-cadherin at IDs in NZPCs, remains at IDs but begins to dissociate from N-cadherin, often forming ring structures and colocalizing with Kv1.5 within IZPCs. At the same time, cortactin/Kv1.5 colocalization is increased at the ID, suggesting an ongoing active process of membrane trafficking of the channel protein. Finally, the Kv1.5 current, measured as the RSD1379-sensitive current, at +40 mV did not differ between NZPCs (0.81±0.24 pA/pF, n = 14) and IZPCs (0.83±0.21 pA/pF, n = 13, NS). In conclusion, the subcellular structural remodeling of Kv1.5, SAP97 and cortactin maintained and normalized the function of the Kv1.5 channel in Purkinje cells that survived myocardial infarction.
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spelling pubmed-41536732014-09-05 SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells Dun, Wen Wright, Patrick Danilo, Peter Mohler, Peter J. Boyden, Penelope A. PLoS One Research Article Because structural remodeling of several proteins, including ion channels, may underlie the abnormal action potentials of Purkinje cells (PCs) that survive in the 48 hr infarcted zone of the canine heart (IZPCs), we sought to determine the subcellular structure and function of the K(V)1.5 (KCNA5) protein in single IZPCs. Clustering of the Kv1.5 subunit in axons is regulated by a synapse-associated protein, SAP97, and is linked to an actin-binding protein, cortactin, and an intercellular adhesion molecule, N-cadherin. To understand the functional remodeling of the Kv1.5 channel and its regulation in IZPCs, Kv1.5 currents in PCs were measured as the currents blocked by 10 µM RSD1379 using patch-clamp techniques. Immunocytochemistry and confocal imaging were used for both single and aggregated IZPCs vs normal PCs (NZPCs) to determine the relationship of Kv1.5 with SAP-97, cortactin and N-cadherin. In IZPCs, both the sarcolemma (SL) and intercalated disk (ID) Kv1.5 protein are abundant, and the amount of cytosolic Kv1.5 protein is greatly increased. SAP-97 is also increased at IDs and has notable cytosolic localization suggesting that SAP-97 may regulate the functional expression and stabilization of Kv1.5 channels in IZPCs. Cortactin, which is located with N-cadherin at IDs in NZPCs, remains at IDs but begins to dissociate from N-cadherin, often forming ring structures and colocalizing with Kv1.5 within IZPCs. At the same time, cortactin/Kv1.5 colocalization is increased at the ID, suggesting an ongoing active process of membrane trafficking of the channel protein. Finally, the Kv1.5 current, measured as the RSD1379-sensitive current, at +40 mV did not differ between NZPCs (0.81±0.24 pA/pF, n = 14) and IZPCs (0.83±0.21 pA/pF, n = 13, NS). In conclusion, the subcellular structural remodeling of Kv1.5, SAP97 and cortactin maintained and normalized the function of the Kv1.5 channel in Purkinje cells that survived myocardial infarction. Public Library of Science 2014-09-03 /pmc/articles/PMC4153673/ /pubmed/25184222 http://dx.doi.org/10.1371/journal.pone.0106830 Text en © 2014 Dun et al http://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 author and source are properly credited.
spellingShingle Research Article
Dun, Wen
Wright, Patrick
Danilo, Peter
Mohler, Peter J.
Boyden, Penelope A.
SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells
title SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells
title_full SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells
title_fullStr SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells
title_full_unstemmed SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells
title_short SAP97 and Cortactin Remodeling in Arrhythmogenic Purkinje Cells
title_sort sap97 and cortactin remodeling in arrhythmogenic purkinje cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4153673/
https://www.ncbi.nlm.nih.gov/pubmed/25184222
http://dx.doi.org/10.1371/journal.pone.0106830
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