Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, TN 37232, USA.
Pôle d'endocrinologie, diabète et nutrition, Institut de recherche expérimentale et clinique, Université catholique de Louvain, Brussels 1200, Belgium.
Sci Signal. 2017 Sep 19;10(497):eaan2883. doi: 10.1126/scisignal.aan2883.
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.
内质网(ER)对钙离子的处理在控制胰腺β细胞功能方面起着至关重要的作用,并且在糖尿病的发病机制中受到干扰。ER 钙离子稳态由 ER 膜上的离子运动决定,包括通过 K 通道的 K 流。我们证明了通过 ER 定位的 TALK-1 通道的 K 流促进了小鼠和人β细胞中 ER 钙离子的释放。我们发现缺乏 TALK-1 的小鼠β细胞表现出基础胞质钙离子减少和 ER 钙离子浓度增加,表明 ER 钙离子泄漏减少。这些钙稳态的变化可能是由于 TALK-1 介导的 ER K 流,因为我们记录了核膜上功能性 TALK-1 通道介导的 K 电流,核膜与 ER 连续。此外,在 HEK293 细胞中过表达 K 不可渗透的 TALK-1 通道不会减少 ER 钙储存。β细胞中 ER 钙含量减少与 ER 应激和糖尿病胰岛功能障碍有关,并且高脂肪饮食喂养的 TALK-1 缺陷小鼠胰岛显示出减少的 ER 应激迹象,表明 TALK-1 活性加剧了 ER 应激。我们的数据确立了 TALK-1 通道作为 β 细胞 ER 钙离子的关键调节剂,并表明 TALK-1 可能是治疗靶点,以减少糖尿病发病过程中β细胞 ER 钙离子处理缺陷。