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A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis

The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating in activation and proliferation of leukocytes as well as promoting apoptosis in several types of tumor cells. Therefore, Kv1.3 is considered a potential pharmacological target for immunodeficiency an...

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Autores principales: Capera, Jesusa, Pérez-Verdaguer, Mireia, Peruzzo, Roberta, Navarro-Pérez, María, Martínez-Pinna, Juan, Alberola-Die, Armando, Morales, Andrés, Leanza, Luigi, Szabó, Ildiko, Felipe, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8248986/
https://www.ncbi.nlm.nih.gov/pubmed/34196606
http://dx.doi.org/10.7554/eLife.69099
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author Capera, Jesusa
Pérez-Verdaguer, Mireia
Peruzzo, Roberta
Navarro-Pérez, María
Martínez-Pinna, Juan
Alberola-Die, Armando
Morales, Andrés
Leanza, Luigi
Szabó, Ildiko
Felipe, Antonio
author_facet Capera, Jesusa
Pérez-Verdaguer, Mireia
Peruzzo, Roberta
Navarro-Pérez, María
Martínez-Pinna, Juan
Alberola-Die, Armando
Morales, Andrés
Leanza, Luigi
Szabó, Ildiko
Felipe, Antonio
author_sort Capera, Jesusa
collection PubMed
description The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating in activation and proliferation of leukocytes as well as promoting apoptosis in several types of tumor cells. Therefore, Kv1.3 is considered a potential pharmacological target for immunodeficiency and cancer. Different cellular locations of Kv1.3, at the plasma membrane or the mitochondria, could be responsible for such duality. While plasma membrane Kv1.3 facilitates proliferation, the mitochondrial channel modulates apoptotic signaling. Several molecular determinants of Kv1.3 drive the channel to the cell surface, but no information is available about its mitochondrial targeting. Caveolins, which are able to modulate cell survival, participate in the plasma membrane targeting of Kv1.3. The channel, via a caveolin-binding domain (CBD), associates with caveolin 1 (Cav1), which localizes Kv1.3 to lipid raft membrane microdomains. The aim of our study was to understand the role of such interactions not only for channel targeting but also for cell survival in mammalian cells. By using a caveolin association-deficient channel (Kv1.3 CBD(less)), we demonstrate here that while the Kv1.3–Cav1 interaction is responsible for the channel localization in the plasma membrane, a lack of such interaction accumulates Kv1.3 in the mitochondria. Kv1.3 CBD(less) severely affects mitochondrial physiology and cell survival, indicating that a functional link of Kv1.3 with Cav1 within the mitochondria modulates the pro-apoptotic effects of the channel. Therefore, the balance exerted by these two complementary mechanisms fine-tune the physiological role of Kv1.3 during cell survival or apoptosis. Our data highlight an unexpected role for the mitochondrial caveolin–Kv1.3 axis during cell survival and apoptosis.
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spelling pubmed-82489862021-07-02 A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis Capera, Jesusa Pérez-Verdaguer, Mireia Peruzzo, Roberta Navarro-Pérez, María Martínez-Pinna, Juan Alberola-Die, Armando Morales, Andrés Leanza, Luigi Szabó, Ildiko Felipe, Antonio eLife Cancer Biology The voltage-gated potassium channel Kv1.3 plays an apparent dual physiological role by participating in activation and proliferation of leukocytes as well as promoting apoptosis in several types of tumor cells. Therefore, Kv1.3 is considered a potential pharmacological target for immunodeficiency and cancer. Different cellular locations of Kv1.3, at the plasma membrane or the mitochondria, could be responsible for such duality. While plasma membrane Kv1.3 facilitates proliferation, the mitochondrial channel modulates apoptotic signaling. Several molecular determinants of Kv1.3 drive the channel to the cell surface, but no information is available about its mitochondrial targeting. Caveolins, which are able to modulate cell survival, participate in the plasma membrane targeting of Kv1.3. The channel, via a caveolin-binding domain (CBD), associates with caveolin 1 (Cav1), which localizes Kv1.3 to lipid raft membrane microdomains. The aim of our study was to understand the role of such interactions not only for channel targeting but also for cell survival in mammalian cells. By using a caveolin association-deficient channel (Kv1.3 CBD(less)), we demonstrate here that while the Kv1.3–Cav1 interaction is responsible for the channel localization in the plasma membrane, a lack of such interaction accumulates Kv1.3 in the mitochondria. Kv1.3 CBD(less) severely affects mitochondrial physiology and cell survival, indicating that a functional link of Kv1.3 with Cav1 within the mitochondria modulates the pro-apoptotic effects of the channel. Therefore, the balance exerted by these two complementary mechanisms fine-tune the physiological role of Kv1.3 during cell survival or apoptosis. Our data highlight an unexpected role for the mitochondrial caveolin–Kv1.3 axis during cell survival and apoptosis. eLife Sciences Publications, Ltd 2021-07-01 /pmc/articles/PMC8248986/ /pubmed/34196606 http://dx.doi.org/10.7554/eLife.69099 Text en © 2021, Capera 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 Cancer Biology
Capera, Jesusa
Pérez-Verdaguer, Mireia
Peruzzo, Roberta
Navarro-Pérez, María
Martínez-Pinna, Juan
Alberola-Die, Armando
Morales, Andrés
Leanza, Luigi
Szabó, Ildiko
Felipe, Antonio
A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
title A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
title_full A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
title_fullStr A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
title_full_unstemmed A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
title_short A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
title_sort novel mitochondrial kv1.3–caveolin axis controls cell survival and apoptosis
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8248986/
https://www.ncbi.nlm.nih.gov/pubmed/34196606
http://dx.doi.org/10.7554/eLife.69099
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