www.science.org
T cell polarization and NFAT activation are stiffness dependent and differentially regulated by the channels PIEZO1 and ORAI1
Target stiffness influences T cell polarization and gene expression through distinct Ca2+ channels.
#IonChannels is an active hashtag on Bluesky. In the last 30 days, 5 people shared 26 posts with it — around 1 a day. Activity is up 100% versus the previous week, peaking on Aug 6 with 5 posts.
www.science.org
T cell polarization and NFAT activation are stiffness dependent and differentially regulated by the channels PIEZO1 and ORAI1
Target stiffness influences T cell polarization and gene expression through distinct Ca2+ channels.
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Drugs exhibit diverse binding modes and access routes in the Nav1.5 cardiac sodium channel pore
Tao and Corry investigate how the binding of sodium channel inhibitors to the Nav1.5 pore using simulations reveal promiscuous, polyspecific binding at the
www.biorxiv.org
Mechanism of NACHO-mediated assembly of pentameric ligand-gated ion channels
Pentameric ligand-gated ion channels (pLGICs) are cell surface receptors of crucial importance for animal physiology[1][1]–[4][2]. This diverse protein family mediates the ionotropic signals triggered...
Announcing the 40th Cell Physiology Workshop, 11th-22nd August 2025. Lectures & practicals on electrophysiological recording techniques, experimental design & statistical analysis. Application deadline: 14th April 2025. liverpool.ac.uk/life-course-an… Please repost 🙂🦑🐌⚡️ #cpw2025 #ionchannels
liverpool.ac.uk
doi.org
Structural and Functional Characterization of the KCNJ6 G154C Variant Reveals Severe GIRK2 Channel Gain-of-Function and Opportunities for Drug Repurposing
G protein-gated inwardly rectifying potassium (GIRK2) channels regulate neuronal excitability and are implicated in neurodevelopmental disorders. A rare KCNJ6 variant, G154C (hGIRK2G154C), was identified in a patient with mild Keppen-Lubinsky syndrome features, contrasting with severe phenotypes linked to other selectivity filter mutations. Here we combined molecular dynamics simulations and patch-clamp electrophysiology to characterize the hGIRK2G154C mutant, revealing a widened selectivity filter that resulted in loss of potassium selectivity, aberrant sodium permeation, and loss of inward rectification, indicating a severe gain-of-function phenotype. An in silico and electrophysiological drug screen identified FDA-approved compounds, including nefazodone and eletriptan, that potently inhibited GIRK2 and GIRK2G154C through distinct blocking mechanisms. These findings elucidate the structural and functional impact of the G154C mutation and highlight potential pharmacological tools and therapeutic candidates for the treatment of GIRK2 channelopathies. ### Competing Interest Statement The authors have declared no competing interest. Molecular Drug Targets, W1232 Austrian Academy of Sciences, https://ror.org/03anc3s24, 26156 Israel Science Foundation, 581_2022
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