Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/215754
Title: Routing of Kv7.1 to endoplasmic reticulum plasma membrane junctions
Author: Serrano Novillo, Clara
Estadella, Irene
Navarro‑Pérez, María
Oliveras Martínez, Anna
de Benito-Bueno, Angela
Socuéllamos, Paula G.
Bosch Marimon, Manel
Coronado, María José
Sastre, Daniel
Valenzuela, Carmen
Soeller, Christian
Felipe Campo, Antonio
Keywords: Reticle endoplasmàtic
Canals de potassi
Endoplasmic reticulum
Potassium channels
Issue Date: Mar-2024
Publisher: John Wiley & Sons
Abstract: Aim:The voltage-gated Kv7.1 channel, in association with the regulatory subunit KCNE1, contributes to the IKs current in the heart. However, both proteins travel to the plasma membrane using different routes. While KCNE1 follows a classical Golgi-mediated anterograde pathway, Kv7.1 is located in endoplasmic reticulum-plasma membrane junctions (ER-PMjs), where it associates with KCNE1 before being delivered to the plasma membrane. Methods:To characterize the channel routing to these spots we used a wide repertoire of methodologies, such as protein expression analysis (i.e. protein association and biotin labeling), confocal (i.e. immunocytochemistry, FRET, and FRAP), and dSTORM microscopy, transmission electron microscopy, proteomics, and electrophysiology. Results: We demonstrated that Kv7.1 targeted ER-PMjs regardless of the origin or architecture of these structures. Kv2.1, a neuronal channel that also contributes to a cardiac action potential, and JPHs, involved in cardiac dyads, increased the number of ER-PMjs in nonexcitable cells, driving and increasing the level of Kv7.1 at the cell surface. Both ER-PMj inducers influenced channel function and dynamics, suggesting that different protein structures are formed. Although exhibiting no physical interaction, Kv7.1 resided in more condensed clusters (ring-shaped) with Kv2.1 than with JPH4. Moreover, we found that VAMPs and AMIGO, which are Kv2.1 ancillary proteins also associated with Kv7.1. Specially, VAP B, showed higher interaction with the channel when ER-PMjs were stimulated by Kv2.1. Conclusion: Our results indicated that Kv7.1 may bind to different structures of ER-PMjs that are induced by different mechanisms. This variable architecture can differentially affect the fate of cardiac Kv7.1 channels.
Note: Reproducció del document publicat a: https://doi.org/10.1111/apha.14106
It is part of: Acta Physiologica, 2024, vol. 240, num.3, p. 1-22
URI: https://hdl.handle.net/2445/215754
Related resource: https://doi.org/10.1111/apha.14106
ISSN: 1748-1708
Appears in Collections:Articles publicats en revistes (Bioquímica i Biomedicina Molecular)

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