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钙离子通道结构与功能对于分泌非常重要。

Ca2+ tunneling architecture and function are important for secretion.

机构信息

Research Department, Ca2+ Signaling Group, Weill Cornell Medicine Qatar, Qatar Foundation, Education City, Qatar.

Department of Physiology and Biophysics, Weill Cornell Medicine, New York, NY, USA.

出版信息

J Cell Biol. 2025 Jan 6;224(1). doi: 10.1083/jcb.202402107. Epub 2024 Nov 5.

Abstract

Ca2+ tunneling requires both store-operated Ca2+ entry (SOCE) and Ca2+ release from the endoplasmic reticulum (ER). Tunneling expands the SOCE microdomain through Ca2+ uptake by SERCA into the ER lumen where it diffuses and is released via IP3 receptors. In this study, using high-resolution imaging, we outline the spatial remodeling of the tunneling machinery (IP3R1; SERCA; PMCA; and Ano1 as an effector) relative to STIM1 in response to store depletion. We show that these modulators redistribute to distinct subdomains laterally at the plasma membrane (PM) and axially within the cortical ER. To functionally define the role of Ca2+ tunneling, we engineered a Ca2+ tunneling attenuator (CaTAr) that blocks tunneling without affecting Ca2+ release or SOCE. CaTAr inhibits Cl- secretion in sweat gland cells and reduces sweating in vivo in mice, showing that Ca2+ tunneling is important physiologically. Collectively our findings argue that Ca2+ tunneling is a fundamental Ca2+ signaling modality.

摘要

钙离子通道需要钙库操纵性钙离子内流(SOCE)和内质网(ER)中的钙离子释放。通过 SERCA 将钙离子摄取到 ER 腔中,从而扩大 SOCE 微区,钙离子在 ER 腔中扩散,并通过 IP3 受体释放。在这项研究中,我们使用高分辨率成像技术,概述了在钙库耗竭时,相对于 STIM1,通道机器(IP3R1;SERCA;PMCA;和 Ano1 作为效应物)的空间重塑。我们表明,这些调节剂在质膜(PM)的横向和皮质 ER 内的轴向重新分布到不同的亚域。为了从功能上定义钙离子通道的作用,我们设计了一种钙离子通道衰减器(CaTAr),它可以阻断钙离子通道而不影响钙离子释放或 SOCE。CaTAr 抑制汗腺细胞中的氯离子分泌,并减少体内小鼠的出汗,表明钙离子通道在生理上很重要。总的来说,我们的研究结果表明钙离子通道是一种基本的钙离子信号转导方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cd8/11540855/6e4edb0b04c1/JCB_202402107_Fig1.jpg

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