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{{tp|p=35821821|t=2022. STIM and Orai Mediated Regulation of Calcium Signaling in Age-Related Diseases.|pdf=|usr=}}{{35821821}} {{tp|p=33937254|t=2021. ORAI1 Ca(2+) Channel as a Therapeutic Target in Pathological Vascular Remodelling.|pdf=|usr=}}{{33937254}} {{tp|p=33328896|t=2020. Store-Operated Calcium Channels in Physiological and Pathological States of the Nervous System.|pdf=|usr=}}{{33328896}} {{tp|p=37576340|t=2023. Intracellular Ca(2+) signalling: unexpected new roles for the usual suspect.|pdf=|usr=}}{{37576340}} {{tp|p=34366887|t=2021. Editorial: Advances and Current Challenges in Calcium Signaling Within the Cardiovascular System.|pdf=|usr=}}{{34366887}} {{tp|p=34122115|t=2021. Development of Store-Operated Calcium Entry-Targeted Compounds in Cancer.|pdf=|usr=}}{{34122115}} {{tp|p=34055617|t=2021. Calcium Channel Protein ORAI1 Mediates TGF-beta Induced Epithelial-to-Mesenchymal Transition in Colorectal Cancer Cells.|pdf=|usr=}}{{34055617}} {{tp|p=28848710|t=2017. The Regulation of Tumor Cell Invasion and Metastasis by Endoplasmic Reticulum-to-Mitochondrial Ca(2+) Transfer.|pdf=|usr=}}{{28848710}} {{tp|p=24009608|t=2013. Emerging roles of L-type voltage-gated and other calcium channels in T lymphocytes.|pdf=|usr=}}{{24009608}} {{tp|p=23630528|t=2013. Ca(2+) influx in T cells: how many ca(2+) channels?|pdf=|usr=}}{{23630528}} {{tp|p=35910331|t=2022. Acidic Cannabinoids Suppress Proinflammatory Cytokine Release by Blocking Store-operated Calcium Entry.|pdf=|usr=}}{{35910331}} {{tp|p=19754903|t=2009. B-lymphocyte calcium influx.|pdf=|usr=}}{{19754903}} {{tp|p=19754891|t=2009. The molecular physiology of CRAC channels.|pdf=|usr=}}{{19754891}} {{tp|p=35671705|t=2023. Mannan-Binding Lectin Reduces Epithelial-Mesenchymal Transition in Pulmonary Fibrosis via Inactivating the Store-Operated Calcium Entry Machinery.|pdf=|usr=}}{{35671705}} {{tp|p=34499925|t=2021. The Mitochondrial Ca(2+) uniporter is a central regulator of interorganellar Ca(2+) transfer and NFAT activation.|pdf=|usr=}}{{34499925}} {{tp|p=31722977|t=2019. Loss of Ca(2+) entry via Orai-TRPC1 induces ER stress, initiating immune activation in macrophages.|pdf=|usr=}}{{31722977}} {{tp|p=30814332|t=2019. Imaging elemental events of store-operated Ca(2+) entry in invading cancer cells with plasmalemmal targeted sensors.|pdf=|usr=}}{{30814332}} {{tp|p=25404747|t=2014. STIM1- and Orai1-mediated Ca(2+) oscillation orchestrates invadopodium formation and melanoma invasion.|pdf=|usr=}}{{25404747}} {{tp|p=24567509|t=2014. Complex role of STIM1 in the activation of store-independent Orai1/3 channels.|pdf=|usr=}}{{24567509}} {{ttp|p=22084246|t=2011. Hypoxia-induced acidosis uncouples the STIM-Orai calcium signaling complex.|pdf=|usr=}}{{22084246}} {{tp|p=20839232|t=2011. The role of calcium release activated calcium channels in osteoclast differentiation.|pdf=|usr=}}{{20839232}} {{ttp|p=20807283|t=2010. Activation and regulation of store-operated calcium entry.|pdf=|usr=}}{{20807283}} {{tp|p=20679432|t=2010. S-glutathionylation activates STIM1 and alters mitochondrial homeostasis.|pdf=|usr=}}{{20679432}} {{tp|p=20554894|t=2010. Regulation of store-operated Ca2+ entry during the cell cycle.|pdf=|usr=}}{{20554894}} {{ttp|p=18420579|t=2008. Store-dependent and -independent modes regulating Ca2+ release-activated Ca2+ channel activity of human Orai1 and Orai3.|pdf=|usr=}}{{18420579}} {{tp|p=15866891|t=2005. STIM1, an essential and conserved component of store-operated Ca2+ channel function.|pdf=|usr=}}{{15866891}} {{tp|p=32415068|t=2020. The native ORAI channel trio underlies the diversity of Ca(2+) signaling events.|pdf=|usr=}}{{32415068}} {{tp|p=27726010|t=2016. Molecular mechanisms underlying inhibition of STIM1-Orai1-mediated Ca(2+) entry induced by 2-aminoethoxydiphenyl borate.|pdf=|usr=}}{{27726010}} {{tp|p=26184105|t=2015. Inside-out Ca(2+) signalling prompted by STIM1 conformational switch.|pdf=|usr=}}{{26184105}} {{tp|p=23736792|t=2013. Indomethacin inhibits cancer cell migration via attenuation of cellular calcium mobilization.|pdf=|usr=}}{{23736792}} {{tp|p=23515871|t=2013. STIM1 and Orai1 mediate CRAC channel activity and are essential for human glioblastoma invasion.|pdf=|usr=}}{{23515871}} {{tp|p=37259313|t=2023. ORAI Calcium Channels: Regulation, Function, Pharmacology, and Therapeutic Targets.|pdf=|usr=}}{{37259313}} {{tp|p=26400989|t=2015. Store-Operated Calcium Channels.|pdf=|usr=}}{{26400989}} {{tp|p=23743658|t=2013. How many Orai's does it take to make a CRAC channel?|pdf=|usr=}}{{23743658}} {{tp|p=23512989|t=2013. STIM1 controls endothelial barrier function independently of Orai1 and Ca2+ entry.|pdf=|usr=}}{{23512989}} {{tp|p=16537481|t=2006. STIM1 has a plasma membrane role in the activation of store-operated Ca(2+) channels.|pdf=|usr=}}{{16537481}} {{tp|p=35884879|t=2022. Klotho Modulates Pro-Fibrotic Activities in Human Atrial Fibroblasts through Inhibition of Phospholipase C Signaling and Suppression of Store-Operated Calcium Entry.|pdf=|usr=}}{{35884879}} {{tp|p=28900932|t=2017. Neurological and Motor Disorders: Neuronal Store-Operated Ca(2+) Signaling: An Overview and Its Function.|pdf=|usr=}}{{28900932}} {{tp|p=20307213|t=2010. Molecular basis of calcium signaling in lymphocytes: STIM and ORAI.|pdf=|usr=}}{{20307213}} {{tp|p=35303866|t=2022. Role of store-operated Ca2+ entry in cardiovascular disease.|pdf=|usr=}}{{35303866}} {{tp|p=34069353|t=2021. Store Operated Calcium Entry in Cell}}{{34069353}} {{tp|p=23348584|t=2013. The plasma membrane channel ORAI1 mediates detrimental calcium influx caused by endogenous oxidative stress.|pdf=|usr=}}{{23348584}} {{tp|p=19496745|t=2009. Regulation of Ca2+ signaling with particular focus on mast cells.|pdf=|usr=}}{{19496745}} {{tp|p=32799904|t=2020. Regulation of [Ca(2+)](i) oscillations and mitochondrial activity by various calcium transporters in mouse oocytes.|pdf=|usr=}}{{32799904}} {{tp|p=32146159|t=2020. TRPM7 activation potentiates SOCE in enamel cells but requires ORAI.|pdf=|usr=}}{{32146159}} {{tp|p=19411837|t=2009. The Ca2+ release-activated Ca2+ current (I(CRAC)) mediates store-operated Ca2+ entry in rat microglia.|pdf=|usr=}}{{19411837}} {{tp|p=25667984|t=2015. Distinct mechanisms regulating mechanical force-induced Ca(2)(+) signals at the plasma membrane and the ER in human MSCs.|pdf=|usr=}}{{25667984}} {{tp|p=12149283|t=2002. Distinct properties of CRAC and MIC channels in RBL cells.|pdf=|usr=}}{{12149283}} {{tp|p=12765678|t=2003. CRAC channels: activation, permeation, and the search for a molecular identity.|pdf=|usr=}}{{12765678}} {{tp|p=23807116|t=2013. Molecular pharmacology of store-operated CRAC channels.|pdf=|usr=}}{{23807116}} {{tp|p=23218667|t=2013. The action of selective CRAC channel blockers is affected by the Orai pore geometry.|pdf=|usr=}}{{23218667}} {{tp|p=17876304|t=2008. Store-operated calcium entry in vascular smooth muscle.|pdf=|usr=}}{{17876304}} {{tp|p=35147077|t=2022. STIM1-dependent peripheral coupling governs the contractility of vascular smooth muscle cells.|pdf=|usr=}}{{35147077}} {{tp|p=28928244|t=2018. Selective inhibitory effects of zinc on cell proliferation in esophageal squamous cell carcinoma through Orai1.|pdf=|usr=}}{{28928244}} {{tp|p=38069089|t=2023. Cracking the Endothelial Calcium (Ca(2+)) Code: A Matter of Timing and Spacing.|pdf=|usr=}}{{38069089}} {{tp|p=26673135|t=2016. Selective ORAI1 Inhibition Ameliorates Autoimmune Central Nervous System Inflammation by Suppressing Effector but Not Regulatory T Cell Function.|pdf=|usr=}}{{26673135}} {{tp|p=19187978|t=2009. STIM and Orai: the long-awaited constituents of store-operated calcium entry.|pdf=|usr=}}{{19187978}} {{tp|p=12547774|t=2003. MIC channels are inhibited by internal divalent cations but not ATP.|pdf=|usr=}}{{12547774}} {{tp|p=12149283|t=2002. Distinct properties of CRAC and MIC channels in RBL cells.|pdf=|usr=}}{{12149283}}
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