scholarly article | Q13442814 |
P2093 | author name string | Vera A Golovina | |
P2860 | cites work | Modulation of Ca(2+) entry by polypeptides of the inositol 1,4, 5-trisphosphate receptor (IP3R) that bind transient receptor potential (TRP): evidence for roles of TRP and IP3R in store depletion-activated Ca(2+) entry | Q22010985 |
Homer Binds TRPC Family Channels and Is Required for Gating of TRPC1 by IP3 Receptors | Q24295021 | ||
Subunit composition of mammalian transient receptor potential channels in living cells | Q24530559 | ||
Junctate is a key element in calcium entry induced by activation of InsP3 receptors and/or calcium store depletion | Q24684783 | ||
Identification of common binding sites for calmodulin and inositol 1,4,5-trisphosphate receptors on the carboxyl termini of trp channels | Q28362108 | ||
Plasma Membrane-Cytoskeleton-Endoplasmic Reticulum Complexes in Neurons and Astrocytes | Q28577477 | ||
Expression of voltage-gated Ca2+ channel subtypes in cultured astrocytes | Q28580537 | ||
Tripartite synapses: glia, the unacknowledged partner | Q29615224 | ||
A model for receptor-regulated calcium entry | Q29620427 | ||
Selective imaging of surface fluorescence with very high aperture microscope objectives | Q30652651 | ||
TrpC1 is a membrane-spanning subunit of store-operated Ca(2+) channels in native vascular smooth muscle cells. | Q31805060 | ||
Upregulated TRP and enhanced capacitative Ca(2+) entry in human pulmonary artery myocytes during proliferation | Q31833758 | ||
Submaximal stimulation of porcine endothelial cells causes focal Ca2+ elevation beneath the cell membrane. | Q32109317 | ||
Local and cellular Ca2+ transients in smooth muscle of pressurized rat resistance arteries during myogenic and agonist stimulation | Q33178694 | ||
"Kissin' cousins": intimate plasma membrane-ER interactions underlie capacitative calcium entry | Q33751686 | ||
From worm to man: three subfamilies of TRP channels | Q33863116 | ||
The TRP ion channel family. | Q34271602 | ||
Stealth ryanodine-sensitive Ca2+ release contributes to activity of capacitative Ca2+ entry and nitric oxide synthase in bovine endothelial cells | Q77526990 | ||
ELECTRON MICROSCOPIC OBSERVATIONS ON NORMAL HUMAN INTRACRANIAL ARTERIES | Q78291144 | ||
Molecular identification and localization of Trp homologues, putative calcium channels, in pregnant human uterus | Q78305957 | ||
Structural complexity and functional diversity of endoplasmic reticulum Ca(2+) stores | Q34384290 | ||
Physiology, phylogeny, and functions of the TRP superfamily of cation channels | Q34467912 | ||
The cellular and molecular basis of store-operated calcium entry | Q34988284 | ||
Junctional signaling microdomains: bridging the gap between the neuronal cell surface and Ca2+ stores | Q35017700 | ||
Na+ pump low and high ouabain affinity alpha subunit isoforms are differently distributed in cells | Q36022585 | ||
Similarity of junctions between plasma membranes and endoplasmic reticulum in muscle and neurons | Q36198406 | ||
Purified ryanodine receptor from rabbit skeletal muscle is the calcium-release channel of sarcoplasmic reticulum. | Q36434123 | ||
Characterization of Calcium Translocation across the Plasma Membrane of Primary Osteoblasts Using a Lipophilic Calcium-sensitive Fluorescent Dye, Calcium Green C18 | Q36694410 | ||
New fluorescent calcium indicators designed for cytosolic retention or measuring calcium near membranes | Q36793083 | ||
Calcium release and influx colocalize to the endoplasmic reticulum | Q36876688 | ||
Capacitative calcium entry revisited | Q37573268 | ||
Near-membrane [Ca2+] transients resolved using the Ca2+ indicator FFP18. | Q37585682 | ||
'Quantal' Ca2+ release and the control of Ca2+ entry by inositol phosphates--a possible mechanism | Q37919365 | ||
Na+ pump alpha 2-subunit expression modulates Ca2+ signaling | Q39633710 | ||
Capacitative calcium entry | Q40377768 | ||
Superficial buffer barrier function of smooth muscle sarcoplasmic reticulum | Q40551508 | ||
Expression and functional role of bTRPC1 channels in native endothelial cells. | Q40756243 | ||
Role of capacitative calcium entry on glutamate-induced calcium influx in type-I rat cortical astrocytes | Q40775509 | ||
Gating of store-operated channels by conformational coupling to ryanodine receptors | Q40855582 | ||
Trp1, a candidate protein for the store-operated Ca(2+) influx mechanism in salivary gland cells | Q40903218 | ||
Localization of the Na(+)-Ca2+ exchanger in vascular smooth muscle, and in neurons and astrocytes | Q41003723 | ||
Capacitative Ca2+ entry is closely linked to the filling state of internal Ca2+ stores: a study using simultaneous measurements of ICRAC and intraluminal [Ca2+] | Q41063479 | ||
Emptying of intracellular Ca2+ stores releases a novel small messenger that stimulates Ca2+ influx | Q41533197 | ||
Store depletion and calcium influx | Q41630788 | ||
Sustained Ca2+ transfer across mitochondria is Essential for mitochondrial Ca2+ buffering, sore-operated Ca2+ entry, and Ca2+ store refilling | Q42446672 | ||
Direct measurement of local raised subplasmalemmal calcium concentrations in growth cones advancing on an N-cadherin substrate | Q44051613 | ||
Discrete store-operated calcium influx into an intracellular compartment in rabbit arteriolar smooth muscle | Q44121182 | ||
Store-operated Ca2+ entry: dynamic interplay between endoplasmic reticulum, mitochondria and plasma membrane | Q44308512 | ||
Arachidonic acid in astrocytes blocks Ca(2+) oscillations by inhibiting store-operated Ca(2+) entry, and causes delayed Ca(2+) influx | Q44346143 | ||
Transient receptor potential channel activation causes a novel form of [Ca 2+]I oscillations and is not involved in capacitative Ca 2+ entry in glial cells. | Q44477237 | ||
Modulation of plasma membrane calcium-ATPase activity by local calcium microdomains near CRAC channels in human T cells | Q44765821 | ||
Use of fluorescent dyes for measurement and localization of organelles associated with Ca2+ store release in human neutrophils | Q47729160 | ||
Intracellular calcium oscillations in astrocytes: a highly plastic, bidirectional form of communication between neurons and astrocytes in situ. | Q48620964 | ||
Expression of glial antigens in mouse astrocytes: species differences and regulation in vitro | Q48875795 | ||
Calcium influx factor directly activates store-operated cation channels in vascular smooth muscle cells | Q48888598 | ||
Capacitative calcium entry is colocalised with calcium release in Xenopus oocytes: evidence against a highly diffusible calcium influx factor. | Q49010164 | ||
Glutamate induces calcium waves in cultured astrocytes: long-range glial signaling | Q49130167 | ||
Junctional subsurface organs in frog sympathetic ganglion cells | Q67436001 | ||
Modulation of intracellular Ca++ in cultured astrocytes by influx through voltage-activated Ca++ channels | Q67702978 | ||
Formaldehyde-amine fixatives for immunocytochemistry of cultured Xenopus myocytes | Q69172320 | ||
New views of smooth muscle structure using freezing, deep-etching and rotary shadowing | Q69949954 | ||
Subcellular calcium oscillators and calcium influx support agonist-induced calcium waves in cultured astrocytes | Q70920235 | ||
Near membrane Ca2+ changes resulting from store release in neutrophils: detection by FFP-18 | Q71945861 | ||
Detection of changes in near-membrane Ca2+ concentration using a novel membrane-associated Ca2+ indicator | Q72331833 | ||
Spatially and functionally distinct Ca2+ stores in sarcoplasmic and endoplasmic reticulum | Q73119267 | ||
Unloading and refilling of two classes of spatially resolved endoplasmic reticulum Ca(2+) stores in astrocytes | Q73804976 | ||
High micromolar Ca2+ beneath the plasma membrane in stimulated neutrophils | Q77090454 | ||
P433 | issue | Pt 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | endoplasmic reticulum | Q79927 |
visualization | Q451553 | ||
astrocyte | Q502961 | ||
P304 | page(s) | 737-749 | |
P577 | publication date | 2005-02-24 | |
P1433 | published in | Journal of Physiology | Q7743612 |
P1476 | title | Visualization of localized store-operated calcium entry in mouse astrocytes. Close proximity to the endoplasmic reticulum | |
P478 | volume | 564 |
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Q48610424 | Ammonium increases Ca(2+) signalling and up-regulates expression of TRPC1 gene in astrocytes in primary cultures and in the in vivo brain. |
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Q50693411 | Astrocyte glycogenolysis is triggered by store-operated calcium entry and provides metabolic energy for cellular calcium homeostasis. |
Q36447585 | Astrocytes modulate neural network activity by Ca²+-dependent uptake of extracellular K+. |
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Q46703786 | Ca2+ entry through TRPC1 channels contributes to intracellular Ca2+ dynamics and consequent glutamate release from rat astrocytes |
Q36893119 | Ca2+ handling is altered when arterial myocytes progress from a contractile to a proliferative phenotype in culture |
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Q48331812 | Chronic treatment with anti-bipolar drugs suppresses glutamate release from astroglial cultures |
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Q35055580 | Dysregulation of Ca2+ signaling in astrocytes from mice lacking amyloid precursor protein |
Q51028099 | Elevated Expression of TRPC4 in Cortical Lesions of Focal Cortical Dysplasia II and Tuberous Sclerosis Complex. |
Q39691899 | Essential role of TRPC6 channels in G2/M phase transition and development of human glioma. |
Q52567131 | Evidence that TRPC1 contributes to calcium-induced differentiation of human keratinocytes. |
Q38005054 | Exocytosis in astrocytes: transmitter release and membrane signal regulation |
Q33564684 | FM dyes enter via a store-operated calcium channel and modify calcium signaling of cultured astrocytes |
Q36179335 | Functional role of TRPC channels in the regulation of endothelial permeability |
Q38069524 | Genetically encoded calcium indicators and astrocyte calcium microdomains |
Q27021135 | Glial cells in (patho)physiology |
Q33823638 | Gliotransmission: Exocytotic release from astrocytes |
Q42873973 | Growth factors upregulate astrocyte [Ca2+]i oscillation by increasing SERCA2b expression |
Q36460918 | Homeostatic function of astrocytes: Ca(2+) and Na(+) signalling |
Q30490414 | Inhibition of transient receptor potential canonical channels impairs cytokinesis in human malignant gliomas |
Q38588644 | Interorganellar membrane microdomains: dynamic platforms in the control of calcium signaling and apoptosis |
Q37814506 | Is astrocyte calcium signaling relevant for synaptic plasticity? |
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Q42494172 | Local Ca2+ detection and modulation of synaptic release by astrocytes. |
Q35016582 | Local subplasma membrane Ca2+ signals detected by a tethered Ca2+ sensor |
Q46466539 | Lysosomes are the major vesicular compartment undergoing Ca2+-regulated exocytosis from cortical astrocytes |
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Q36496696 | Mechanisms of glutamate release from astrocytes |
Q47812757 | Metabolic Disorders and Cancer: Hepatocyte Store-Operated Ca2+ Channels in Nonalcoholic Fatty Liver Disease. |
Q38252272 | Mitochondrial dynamics in astrocytes. |
Q48701791 | Modeling the spontaneous Ca2+ oscillations in astrocytes: Inconsistencies and usefulness |
Q45899854 | Neuronal-glial networks as substrate for CNS integration. |
Q36174062 | New molecular players in capacitative Ca2+ entry |
Q37667102 | Orai1 and Orai3 in Combination with Stim1 Mediate the Majority of Store-operated Calcium Entry in Astrocytes |
Q37421050 | Orai1, a critical component of store-operated Ca2+ entry, is functionally associated with Na+/Ca2+ exchanger and plasma membrane Ca2+ pump in proliferating human arterial myocytes |
Q49917383 | Physiology of Astroglia |
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Q34017477 | Signaling mechanisms that link salt retention to hypertension: endogenous ouabain, the Na(+) pump, the Na(+)/Ca(2+) exchanger and TRPC proteins |
Q30481726 | Some assembly required: constructing the elementary units of store-operated Ca2+ entry |
Q48116985 | Sphingosine-1-phosphate induces Ca2+ signaling and CXCL1 release via TRPC6 channel in astrocytes |
Q36690123 | Store-Operated Calcium Entry in Müller Glia Is Controlled by Synergistic Activation of TRPC and Orai Channels. |
Q47707092 | Store-operated Ca2+ channels blockers inhibit lipopolysaccharide induced astrocyte activation |
Q38107181 | Store-operated calcium entry in neuroglia |
Q41620733 | Store-operated calcium entry is essential for glial calcium signalling in CNS white matter. |
Q37183259 | Subcellular propagation of calcium waves in Müller glia does not require autocrine/paracrine purinergic signaling |
Q35878623 | Systematic colocalization errors between acridine orange and EGFP in astrocyte vesicular organelles |
Q26823717 | TRP channels coordinate ion signalling in astroglia |
Q38830277 | TRP-Na(+)/Ca(2+) Exchanger Coupling |
Q30505420 | TRPA1 channels regulate astrocyte resting calcium and inhibitory synapse efficacy through GAT-3 |
Q55309338 | TRPC1 Channels Are Expressed in Pyramidal Neurons and in a Subset of Somatostatin Interneurons in the Rat Neocortex. |
Q48357319 | TRPC1 and metabotropic glutamate receptor expression in rat auditory midbrain neurons. |
Q48245668 | TRPC1- and TRPC3-dependent Ca2+ signaling in mouse cortical astrocytes affects injury-evoked astrogliosis in vivo |
Q35053005 | TRPC1-mediated Ca2+ and Na+ signalling in astroglia: differential filtering of extracellular cations |
Q36167779 | TRPC1: store-operated channel and more |
Q48435745 | TRPC3/6/7 Knockdown Protects the Brain from Cerebral Ischemia Injury via Astrocyte Apoptosis Inhibition and Effects on NF-кB Translocation |
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Q34326678 | The increased activity of TRPV4 channel in the astrocytes of the adult rat hippocampus after cerebral hypoxia/ischemia. |
Q37690721 | The physiological significance of the cardiotonic steroid/ouabain-binding site of the Na,K-ATPase |
Q37171594 | The trinity of Ca2+ sources for the exocytotic glutamate release from astrocytes |
Q42873472 | Transient receptor potential canonical 3 (TRPC3) mediates thrombin-induced astrocyte activation and upregulates its own expression in cortical astrocytes. |
Q33589231 | Upregulation of Na+ and Ca2+ transporters in arterial smooth muscle from ouabain-induced hypertensive rats |
Q34150529 | Upregulation of Na+/Ca2+ exchanger and TRPC6 contributes to abnormal Ca2+ homeostasis in arterial smooth muscle cells from Milan hypertensive rats |
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