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Alzayady KJ, Wang L, Chandrasekhar R, Wagner LE 2nd, Van Petegem F, Yule DI. Defining the stoichiometry of inositol 1,4,5-trisphosphate binding required to initiate Ca2+ release. Sci Signal. 2016 Apr 5;9(422):ra35.Thillaiappan NB, Chavda AP, Tovey SC, Prole DL, Taylor CW. Ca(2+) signals initiate at immobile IP(3) receptors adjacent to ER-plasma membrane junctions. Nat Commun. 2017 Nov 15;8(1):1505. View ArticleFiladi R, Leal NS, Schreiner B, Rossi A, Dentoni G, Pinho CM, Wiehager B, Cieri D, Calì T, Pizzo P, Ankarcrona M. TOM70 Sustains Cell Bioenergetics by Promoting IP3R3-Mediated ER to Mitochondria Ca(2+) Transfer. Curr Biol. 2018 Feb 5;28(3):369-382.e6. View ArticleMataragka S, Taylor CW. All three IP(3) receptor subtypes generate Ca(2+) puffs, the universal building blocks of IP(3)-evoked Ca(2+) signals. J Cell Sci. 2018 Aug 10. pii: jcs.220848. View ArticleAtakpa P, Thillaiappan NB, Mataragka S, Prole DL, Taylor CW. IP(3) Receptors Preferentially Associate with ER-Lysosome Contact Sites and Selectively Deliver Ca(2+) to Lysosomes. Cell Rep. 2018 Dec 11. View ArticleEllefsen KL, Lock JT, Settle B, Karsten CA, Parker I. Applications of FLIKA, a Python-based image processing and analysis platform, for studying local events of cellular calcium signaling. Biochim Biophys Acta Mol Cell Res. 2018 Nov 27. View ArticleAtakpa P, van Marrewijk LM, Apta-Smith M, Chakraborty S, Taylor CW. GPN does not release lysosomal Ca(2+), but evokes ER Ca(2+) release by increasing cytosolic pH independent of cathepsin C. J Cell Sci. 2019 Jan 7. View ArticleLock JT, Alzayady KJ, Yule DI, Parker I. All three IP(3) receptor isoforms generate Ca(2+) puffs that display similar characteristics. Sci Signal. 2018 Dec 18;11(561). pii: eaau0344. View ArticleRossi AM, Taylor CW. Reliable measurement of free Ca2+ concentrations in the ER lumen using Mag-Fluo-4. Cell Calcium. 2020;87:102188.View articleVais H, Wang M, Mallilankaraman K, Payne R, McKennan C, Lock JT, Spruce LA, Fiest C, Chan MY, Parker I, Seeholzer SH, Foskett JK, Mak DD. ER-luminal [Ca2+] regulation of InsP3 receptor gating mediated by an ER-luminal peripheral Ca2+-binding protein. Elife. 2020 May 18;9:e53531. View articleShipton ML, Riley AM, Rossi AM, Brearley CA, Taylor CW, Potter BVL. Both d- and l-Glucose Polyphosphates Mimic d-myo-Inositol 1,4,5-Trisphosphate: New Synthetic Agonists and Partial Agonists at the Ins(1,4,5)P3 Receptor. J Med Chem. 2020 May 28;63(10):5442-5457.View articleSu X, Dohle W, Mills SJ, Watt JM, Rossi AM, Taylor CW, Potter BVL. Inositol Adenophostin: Convergent Synthesis of a Potent Agonist of d-myo-Inositol 1,4,5-Trisphosphate Receptors. ACS Omega. 2020 Oct 28;5(44):28793-28811.View articleLagos-Cabré R, Ivanova A, Taylor CW. Ca2+ Release by IP3 Receptors Is Required to Orient the Mitotic Spindle. Cell Rep. 2020 Dec 15;33(11):108483. View articleIf you publish research with this product, please let us know so we can cite your paper.