A Quantitative Assay for Ca2+ Uptake through Normal and Pathological Hemichannels

Author:

Nardin ChiaraORCID,Tettey-Matey Abraham,Donati Viola,Marazziti DanielaORCID,Di Pietro ChiaraORCID,Peres Chiara,Raspa Marcello,Zonta Francesco,Yang Guang,Gorelik Maryna,Singh Serena,Cardarelli LiaORCID,Sidhu Sachdev S.ORCID,Mammano FabioORCID

Abstract

Connexin (Cx) hemichannels (HCs) are large pore hexameric structures that allow the exchange of ions, metabolites and a variety of other molecules between the cell cytoplasm and extracellular milieu. HC inhibitors are attracting growing interest as drug candidates because deregulated fluxes through HCs have been implicated in a plethora of genetic conditions and other diseases. HC activity has been mainly investigated by electrophysiological methods and/or using HC-permeable dye uptake measurements. Here, we present an all-optical assay based on fluorometric measurements of ionized calcium (Ca2+) uptake with a Ca2+-selective genetically encoded indicator (GCaMP6s) that permits the optical tracking of cytosolic Ca2+ concentration ([Ca2+]cyt) changes with high sensitivity. We exemplify use of the assay in stable pools of HaCaT cells overexpressing human Cx26, Cx46, or the pathological mutant Cx26G45E, under control of a tetracycline (Tet) responsive element (TRE) promoter (Tet-on). We demonstrate the usefulness of the assay for the characterization of new monoclonal antibodies (mAbs) targeting the extracellular domain of the HCs. Although we developed the assay on a spinning disk confocal fluorescence microscope, the same methodology can be extended seamlessly to high-throughput high-content platforms to screen other kinds of inhibitors and/or to probe HCs expressed in primary cells and microtissues.

Funder

University of Padua

Telethon Foundation

Italian Ministry of Education, Universities and Research

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Connexin Hemichannel Inhibition and Human Genodermatoses;Journal of Investigative Dermatology;2024-09

2. Measurement of Ca2+ Uptake Through Connexin Hemichannels;Methods in Molecular Biology;2024

3. A Protocol for the Automated Assessment of Cutaneous Pathology in a Mouse Model of Hemichannel Dysfunction;Methods in Molecular Biology;2024

4. Generation of Connexin-Expressing Stable Cell Pools;Methods in Molecular Biology;2024

5. Diversity in connexin biology;Journal of Biological Chemistry;2023-11

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