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Selective profiling of N- and C-terminal nucleotide-binding sites in a TRPM2 channel. , Tóth B, Iordanov I, Csanády L., J Gen Physiol. May 4, 2020; 152 (5):
Enzyme activity and selectivity filter stability of ancient TRPM2 channels were simultaneously lost in early vertebrates. , Iordanov I, Tóth B, Szollosi A, Csanády L., Elife. April 2, 2019; 8
Structure of a TRPM2 channel in complex with Ca2+ explains unique gating regulation. , Zhang Z , Tóth B, Szollosi A, Chen J , Csanády L., Elife. May 10, 2018; 7
The proposed channel-enzyme transient receptor potential melastatin 2 does not possess ADP ribose hydrolase activity. , Iordanov I, Mihályi C, Tóth B, Csanády L., Elife. July 6, 2016; 5
Ruling out pyridine dinucleotides as true TRPM2 channel activators reveals novel direct agonist ADP-ribose-2'-phosphate. , Tóth B, Iordanov I, Csanády L., J Gen Physiol. May 1, 2015; 145 (5): 419-30.
Putative chanzyme activity of TRPM2 cation channel is unrelated to pore gating. , Tóth B, Iordanov I, Csanády L., Proc Natl Acad Sci U S A. November 25, 2014; 111 (47): 16949-54.
Pore collapse underlies irreversible inactivation of TRPM2 cation channel currents. , Tóth B, Csanády L., Proc Natl Acad Sci U S A. August 14, 2012; 109 (33): 13440-5.
Identification of direct and indirect effectors of the transient receptor potential melastatin 2 ( TRPM2) cation channel. , Tóth B, Csanády L., J Biol Chem. September 24, 2010; 285 (39): 30091-102.
Four Ca2+ ions activate TRPM2 channels by binding in deep crevices near the pore but intracellularly of the gate. , Csanády L, Törocsik B., J Gen Physiol. February 1, 2009; 133 (2): 189-203.
Evolution of thermoTRP ion channel homologs in vertebrates. , Saito S, Shingai R., Physiol Genomics. November 27, 2006; 27 (3): 219-30.
Xenopus TRPN1 ( NOMPC) localizes to microtubule-based cilia in epithelial cells, including inner- ear hair cells. , Shin JB, Adams D , Paukert M, Siba M, Sidi S, Levin M , Gillespie PG, Gründer S., Proc Natl Acad Sci U S A. August 30, 2005; 102 (35): 12572-7.