TRIC-A Channel Maintains Store Calcium Handling by Interacting With Type 2 Ryanodine Receptor in Cardiac Muscle
Trimeric intracellular cation (TRIC)-A and B are distributed to endoplasmic reticulum/sarcoplasmic reticulum intracellular Ca stores. The crystal structure of TRIC has been determined, confirming the homotrimeric structure of a potassium channel. While the pore architectures of TRIC-A and TRIC-B are...
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Veröffentlicht in: | Circulation research 2020-02, Vol.126 (4), p.417-435 |
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Zusammenfassung: | Trimeric intracellular cation (TRIC)-A and B are distributed to endoplasmic reticulum/sarcoplasmic reticulum intracellular Ca
stores. The crystal structure of TRIC has been determined, confirming the homotrimeric structure of a potassium channel. While the pore architectures of TRIC-A and TRIC-B are conserved, the carboxyl-terminal tail (CTT) domains of TRIC-A and TRIC-B are different from each other. Aside from its recognized role as a counterion channel that participates in excitation-contraction coupling of striated muscles, the physiological function of TRIC-A in heart physiology and disease has remained largely unexplored.
In cardiomyocytes, spontaneous Ca
waves, triggered by store overload-induced Ca
release mediated by the RyR
(type 2 ryanodine receptor), develop extrasystolic contractions often associated with arrhythmic events. Here, we test the hypothesis that TRIC-A is a physiological component of RyR
-mediated Ca
release machinery that directly modulates store overload-induced Ca
release activity via CTT.
We show that cardiomyocytes derived from the TRIC-A
(TRIC-A knockout) mice display dysregulated Ca
movement across sarcoplasmic reticulum. Biochemical studies demonstrate a direct interaction between CTT-A and RyR
. Modeling and docking studies reveal potential sites on RyR
that show differential interactions with CTT-A and CTT-B. In HEK293 (human embryonic kidney) cells with stable expression of RyR
, transient expression of TRIC-A, but not TRIC-B, leads to apparent suppression of spontaneous Ca
oscillations. Ca
measurements using the cytosolic indicator Fura-2 and the endoplasmic reticulum luminal store indicator D1ER suggest that TRIC-A enhances Ca
leak across the endoplasmic reticulum by directly targeting RyR
to modulate store overload-induced Ca
release. Moreover, synthetic CTT-A peptide facilitates RyR
activity in lipid bilayer reconstitution system, enhances Ca
sparks in permeabilized TRIC-A
cardiomyocytes, and induces intracellular Ca
release after microinjection into isolated cardiomyocytes, whereas such effects were not observed with the CTT-B peptide. In response to isoproterenol stimulation, the TRIC-A
mice display irregular ECG and develop more fibrosis than the WT (wild type) littermates.
In addition to the ion-conducting function, TRIC-A functions as an accessory protein of RyR
to modulate sarcoplasmic reticulum Ca
handling in cardiac muscle. |
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ISSN: | 0009-7330 1524-4571 |
DOI: | 10.1161/CIRCRESAHA.119.316241 |