** = Publications listed in SCI/SSCI/Pubmed
** Curcic, S; Erkan-Candag, H; Pilic, J; Malli, R; Wiedner, P; Tiapko, O; Groschner, K
TRPC3 governs the spatiotemporal organization of cellular Ca2+ signatures by functional coupling to IP3 receptors.
Cell Calcium. 2022; 108: 102670
Doi: 10.1016/j.ceca.2022.102670
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** Erkan-Candag, H; Clarke, A; Tiapko, O; Gsell, MAF; Stockner, T; Groschner, K
Diacylglycerols interact with the L2 lipidation site in TRPC3 to induce a sensitized channel state
EMBO REP. 2022; e54276
Doi: 10.15252/embr.202154276
[OPEN ACCESS]
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** Erkan-Candag, H; Krivic, D; Gsell, MAF; Aleksanyan, M; Stockner, T; Dimova, R; Tiapko, O; Groschner, K
Characterization of DAG Binding to TRPC Channels by Target-Dependent cis-trans Isomerization of OptoDArG
BIOMOLECULES. 2022; 12(6): 799
Doi: 10.3390/biom12060799
[OPEN ACCESS]
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** Schmidt, T; Jakesova, M; Derek, V; Kornmueller, K; Tiapko, O; Bischof, H; Burgstaller, S; Waldherr, L; Nowakowska, M; Baumgartner, C; Ucal, M; Leitinger, G; Scheruebel, S; Patz, S; Malli, R; Glowacki, ED; Rienmuller, T; Schindl, R
Light Stimulation of Neurons on Organic Photocapacitors Induces Action Potentials with Millisecond Precision
ADV MATER TECHNOL-US. 2022; 2101159
Doi: 10.1002/admt.202101159
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** Clarke, AV; Tiapko, O; Groschner, K; Stockner, T
A molecular dynamics exploration of the binding of phosphatidylinositol-4,5-bisphosphate to transient receptor potential canonical 3
BIOPHYS J. 2022; 121(3):372A-372A.
[Poster]
Web of Science
** Erkan, H; Clarke, A; Gsell, M; Tiapko, O; Stockner, T; Groschner, K
Lipid photopharmacology reveals a DAG-bound, sensitized state of TRPC3
BIOPHYS J. 2022; 121(3):103-103.
[Poster]
Web of Science
** Tiapko, O; Groschner, K
TRPC3, an underestimated, universal pacemaker channel?
CELL CALCIUM. 2021; 100: 102484
Doi: 10.1016/j.ceca.2021.102484
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** Erkan, H; Tiapko, O; Clarke, A; Gsell, M; Stockner, T; Groschner, K
Optical lipid clamp analysis and MD simulations suggest lipid binding domain2 (L2) as the primary site for TRPC3 regulation by diacylglycerols
EUR BIOPHYS J BIOPHY. 2021; 50(SUPPL 1):182-182.JUL 24-28, 2021; Vienna, AUSTRIA.
[Poster]
Web of Science
** Krivić, D; Bacsa, B; Graziani, A; Tiapko, O; Groschner, K
TRPC chemo-optogenetics enables precise and specific control over mast cell function
EUR BIOPHYS J BIOPHY. 2021; 50(SUPPL 1):194-194.-13th European Biophysics Conference (EBSA 2021); JUL 24-28, 2021; Vienna, AUSTRIA.
[Poster]
Web of Science
** Tiapko, O; Clarke, A; Erkan, H; Stockner, T; Groschner, K
Evidence for PIP2 interaction with TRPC3 as a requirement for inward rectification
EUR BIOPHYS J BIOPHY. 2021; 50(SUPPL 1):189-189.JUL 24-28, 2021;
[Poster]
Web of Science
** Bacsa, B; Graziani, A; Krivic, D; Wiedner, P; Malli, R; Rauter, T; Tiapko, O; Groschner, K
Pharmaco-Optogenetic Targeting of TRPC Activity Allows for Precise Control Over Mast Cell NFAT Signaling.
Front Immunol. 2020; 11: 613194-613194.
Doi: 10.3389/fimmu.2020.613194
[OPEN ACCESS]
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** Bacsa, B; Tiapko, O; Stockner, T; Groschner, K
Mechanisms and significance of Ca2+ entry through TRPC channels.
Curr Opin Physiol. 2020; 17(2):25-33
Doi: 10.1016/j.cophys.2020.06.005
[OPEN ACCESS]
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** Graziani, A; Bacsa, B; Krivic, D; Wiedner, P; Curcic, S; Schindl, R; Tiapko, O; Groschner, K
Light-Mediated Control over TRPC3-Mediated NFAT Signaling.
Cells. 2020; 9(3): 556
Doi: 10.3390/cells9030556
[OPEN ACCESS]
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** Bacsa, B; Tiapko, O; Graziani, A; Curcic, S; Groschner, K
All-Optical Analysis of TRPC3/6 Signalling in Mast Cells.
BIOPHYS J. 2020; 118(3):415A-415A.-64th Annual Meeting of the Biophysical-Society; FEB 15-19, 2020; San Diego, CA.
[Poster]
Web of Science
** Bandleon, S; Strunz, PP; Pickel, S; Tiapko, O; Cellini, A; Miranda-Laferte, E; Eder-Negrin, P
FKBP52 regulates TRPC3-dependent Ca2+ signals and the hypertrophic growth of cardiomyocyte cultures.
J Cell Sci. 2019; 132(20):
Doi: 10.1242/jcs.231506
[OPEN ACCESS]
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** Tiapko, O; Shrestha, N; Lindinger, S; Guedes de la Cruz, G; Graziani, A; Klec, C; Butorac, C; Graier, WF; Kubista, H; Freichel, M; Birnbaumer, L; Romanin, C; Glasnov, T; Groschner, K
Lipid-independent control of endothelial and neuronal TRPC3 channels by light.
Chem Sci. 2019; 10(9):2837-2842
Doi: 10.1039/c8sc05536j
[OPEN ACCESS]
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** Curcic, S; Tiapko, O; Groschner, K
Photopharmacology and opto-chemogenetics of TRPC channels-some therapeutic visions.
PHARMACOL THERAPEUT. 2019; 200(5): 13-26.
Doi: 10.1016/j.pharmthera.2019.04.003
[OPEN ACCESS]
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** Tiapko, O; Curcic, S; de la Cruz, GG; Glasnov, T; Groschner, K
Agonist-Dependent Plasticity in the TRPC3 Selectivity Filter
BIOPHYS J. 2019; 116(3):536A-536A.-63rd Annual Meeting of the Biophysical-Society; MAR 02-06, 2019; Baltimore, MD.
Doi: 10.1016/j.bpj.2018.11.2883
[Poster]
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** Lichtenegger, M; Tiapko, O; Svobodova, B; Stockner, T; Glasnov, TN; Schreibmayer, W; Platzer, D; de la Cruz, GG; Krenn, S; Schober, R; Shrestha, N; Schindl, R; Romanin, C; Groschner, K
An optically controlled probe identifies lipid-gating fenestrations within the TRPC3 channel.
Nat Chem Biol. 2018; 14(4):396-404
Doi: 10.1038/s41589-018-0015-6
[OPEN ACCESS]
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** Groschner, K; Tiapko, O
Revelation of an enigmatic signaling machinery-First insights into the mammalian TRPC architecture.
Cell Calcium. 2018; 74(9):144-146
Doi: 10.1016/j.ceca.2018.07.006
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** Tiapko, O; Groschner, K
TRPC3 as a Target of Novel Therapeutic Interventions.
Cells. 2018; 7(7):
Doi: 10.3390/cells7070083
[OPEN ACCESS]
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** Tiapko, O; Lichtenegger, M; de la Cruz, GG; Glasnov, TN; Svobodova, B; Schreibmayer, W; Platzer, D; Krenn, S; Shrestha, N; Schindl, R; Stockner, T; Romanin, C; Groschner, K
Photoswitchable Diacylglycerols Identify a Novel Lipid-Gating Mechanism in TRPC3 Channels
BIOPHYS J. 2018; 114(3):641A-641A.-62nd Annual Meeting of the Biophysical-Society; FEB 17-21, 2018; San Francisco, USA.
[Poster]
Web of Science
** de la Cruz, GG; Svobodova, B; Lichtenegger, M; Tiapko, O; Groschner, K; Glasnov, T
Intensified Microwave-Assisted N-Acylation Procedure - Synthesis and Activity Evaluation of TRPC3 Channel Agonists with a 1,3-Dihydro-2H-benzo[d]imidazol-2-one Core.
Synlett. 2017; 28(6):695-700
Doi: 10.1055/s-0036-1589472
[OPEN ACCESS]
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** Tiapko, O; de la Cruz, GG; Glasnov, T; Kubista, H; Lichtenegger, M; Groschner, K
Photopharmacological Modulation of Lipid-Gated TRPC Channels as a Strategy to Govern Neuronal Excitability.
BIOPHYS J. 2017; 112(3):467A-467A.-61tst Annual Meeting of the Biophysical-Society; FEB 11-15, 2017; New Orleans, LA, USA.
Doi: 10.1016/j.bpj.2016.11.2504
[Oral Communication]
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** Tiapko, O; Bacsa, B; de la Cruz, GG; Glasnov, T; Groschner, K
Optopharmacological control of TRPC channels by coumarin-caged lipids is associated with a phototoxic membrane effect.
Sci China Life Sci. 2016; 59(8):802-810
Doi: 10.1007/s11427-016-5095-5
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** Poteser, M; Bacsa, B; Tiapko, O; Lichtenegger, M; Frischauf, I; Romanin, C; Groschner, K
TRPC3-Calcineurin Microdomains Govern Orai1 Signaling in Mast Cells
BIOPHYS J. 2016; 110(3):610A-610A.-60th Annual Meeting of the Biophysical-Society; FEB 27-MAR 02, 2016; Los Angeles, CA.
Doi: 10.1016/j.bpj.2015.11.3258
[Poster]
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** Tiapko, O; Glasnov, T; de la Cruz, GG; Poteser, M; Lichtenegger, M; Groschner, K
Modulation of Neuronal Activity by Synthetic Activators of Lipid-Gated TRPC Channels
BIOPHYS J. 2016; 110(3):610A-610A.-60th Annual Meeting of the Biophysical-Society; FEB 27-MAR 02, 2016; Los Angeles, CA.
Doi: 10.1016/j.bpj.2015.11.3259
[Poster]
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