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Paper Details

TRIC-A Channel Maintains Store Calcium Handling by Interacting With Type 2 Ryanodine Receptor in Cardiac Muscle.
Circ Res
14
2020
CTT, CTT-, CTT-A, CTT-B, CTT-B peptide, Ca2, Ca2+, Calcium, Cardiac Muscle, D1ER, Fura-2, HEK293 (human embryonic kidney) cells, RyR2, Ryanodine, TRIC, TRIC-A, TRIC-A-, TRIC-A-/-, TRIC-B, Trimeric intracellular cation (TRIC)-A and B, Type 2 Ryanodine Receptor, arrhythmic, carboxyl, cardiac muscle, cardiomyocytes, extrasystolic contractions, human, isolated cardiomyocytes, isoproterenol, mice, permeabilized TRIC, permeabilized TRIC-A-/- cardiomyocytes, potassium, ryanodine, striated muscles, type 2 ryanodine receptor
Author NameAffiliation
Miyuki NishiKyoto University Graduate School of Pharmaceutical Sciences
Zhiwei MaDalton Cardiovascular Research Center (Z.M., University of Missouri
Zhiwei MaUniversity of Missouri
Zhiwei MaDalton Cardiovascular Research Center (Z.M., University of Missouri
Zhiwei MaUniversity of Missouri
Liming QiuDalton Cardiovascular Research Center (Z.M., University of Missouri
Liming QiuUniversity of Missouri
Liming QiuDalton Cardiovascular Research Center (Z.M., University of Missouri
Liming QiuUniversity of Missouri
Xiaoqin ZouDalton Cardiovascular Research Center (Z.M., University of Missouri
Xiaoqin ZouUniversity of Missouri
Xiaoqin ZouDalton Cardiovascular Research Center (Z.M., University of Missouri
Xiaoqin ZouUniversity of Missouri
Hiroshi TakeshimaKyoto University Graduate School of Pharmaceutical Sciences
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