Ca handling by the endoplasmic reticulum (ER) serves critical roles in controlling pancreatic β cell function and becomes perturbed during the pathogenesis of diabetes. ER Ca homeostasis is determined by ion movements across the ER membrane, including K flux through K channels. We demonstrated that K flux through ER-localized TALK-1 channels facilitated Ca release from the ER in mouse and human β cells. We found that β cells from mice lacking TALK-1 exhibited reduced basal cytosolic Ca and increased ER Ca concentrations, suggesting reduced ER Ca leak. These changes in Ca homeostasis were presumably due to TALK-1-mediated ER K flux, because we recorded K currents mediated by functional TALK-1 channels on the nuclear membrane, which is continuous with the ER. Moreover, overexpression of K-impermeable TALK-1 channels in HEK293 cells did not reduce ER Ca stores. Reduced ER Ca content in β cells is associated with ER stress and islet dysfunction in diabetes, and islets from TALK-1-deficient mice fed a high-fat diet showed reduced signs of ER stress, suggesting that TALK-1 activity exacerbated ER stress. Our data establish TALK-1 channels as key regulators of β cell ER Ca and suggest that TALK-1 may be a therapeutic target to reduce ER Ca handling defects in β cells during the pathogenesis of diabetes.
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http://dx.doi.org/10.1126/scisignal.aan2883 | DOI Listing |
Elife
May 2024
Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, United States.
The gain-of-function mutation in the TALK-1 K channel (p.L114P) is associated with maturity-onset diabetes of the young (MODY). TALK-1 is a key regulator of β-cell electrical activity and glucose-stimulated insulin secretion.
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January 2024
Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, TN 37232, USA. Electronic address:
Mitochondrial Ca ([Ca]) homeostasis is critical for β-cell function and becomes disrupted during the pathogenesis of diabetes. [Ca] uptake is dependent on elevations in cytoplasmic Ca ([Ca]) and endoplasmic reticulum Ca ([Ca]) release, both of which are regulated by the two-pore domain K channel TALK-1. Here, utilizing a novel β-cell TALK-1-knockout (β-TALK-1-KO) mouse model, we found that TALK-1 limited β-cell [Ca] accumulation and ATP production.
View Article and Find Full Text PDFThe gain-of-function mutation in the TALK-1 K channel (p.L114P) is associated with maturity-onset diabetes of the young (MODY). TALK-1 is a key regulator of β-cell electrical activity and glucose-stimulated insulin secretion (GSIS).
View Article and Find Full Text PDFJCI Insight
July 2021
Faculty of Medicine, University of Queensland, Herston, Queensland, Australia.
Maturity-onset diabetes of the young (MODY) is a heterogeneous group of monogenic disorders of impaired pancreatic β cell function. The mechanisms underlying MODY include β cell KATP channel dysfunction (e.g.
View Article and Find Full Text PDFMol Metab
March 2018
Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, TN 37232, USA. Electronic address:
Objective: Single-cell RNA sequencing studies have revealed that the type-2 diabetes associated two-pore domain K (K2P) channel TALK-1 is abundantly expressed in somatostatin-secreting δ-cells. However, a physiological role for TALK-1 in δ-cells remains unknown. We previously determined that in β-cells, K flux through endoplasmic reticulum (ER)-localized TALK-1 channels enhances ER Ca leak, modulating Ca handling and insulin secretion.
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