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Interactomic exploration of LRRC8A in volume-regulated anion channels

Cell death discovery. 2024-11; 
Veronica Carpanese; Margherita Festa; Elena Prosdocimi; Magdalena Bachmann; Soha Sadeghi; Sara Bertelli; Frank Stein; Angelo Velle; Mostafa A. L. Abdel-Salam; Chiara Romualdi; Michael Pusch; Vanessa Checchetto
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Protein Electrophoresis and Western NP40, supplemented with a Protease Inhibitor Cocktail (Sigma) and 2 mM DTT. The lysates were resolved by SDS-PAGE using 4-12% ExpressPlus PAGE gels (GenScript) and then transferred to a membrane (polyvinylidene fluoride, PVDF, Amersham Hybond P 0.45 m). The membranes were checked for equal loading using a Get A Quote

摘要

Ion channels are critical in enabling ion movement into and within cells and are important targets for pharmacological interventions in different human diseases. In addition to their ion transport abilities, ion channels interact with signalling and scaffolding proteins, which affects their function, cellular positioning, and links to intracellular signalling pathways. The study of channelosomes within cells has the potential to uncover their involvement in human diseases, although this field of research is still emerging. LRRC8A is the gene that encodes a crucial protein involved in the formation of volume-regulated anion channels (VRACs). Some studies suggest that LRRC8A could be a valuable prognostic tool in... More

关键词

Chloride channels, Protein-protein interaction networks