scholarly journals Loss of MicroRNA-106b-25 Cluster Promotes Atrial Fibrillation by Enhancing Ryanodine Receptor Type-2 Expression and Calcium Release

2014 ◽  
Vol 7 (6) ◽  
pp. 1214-1222 ◽  
Author(s):  
David Y. Chiang ◽  
Natee Kongchan ◽  
David L. Beavers ◽  
Katherina M. Alsina ◽  
Niels Voigt ◽  
...  
2014 ◽  
Vol 103 (1) ◽  
pp. 178-187 ◽  
Author(s):  
David Y. Chiang ◽  
Na Li ◽  
Qiongling Wang ◽  
Katherina M. Alsina ◽  
Ann P. Quick ◽  
...  

2013 ◽  
Vol 34 (suppl 1) ◽  
pp. P5016-P5016
Author(s):  
D. Y. Chiang ◽  
N. Li ◽  
G. Wang ◽  
Q. Wang ◽  
A. Quick ◽  
...  

Proteomes ◽  
2021 ◽  
Vol 9 (2) ◽  
pp. 27
Author(s):  
David Y. Chiang ◽  
Satadru Lahiri ◽  
Guoliang Wang ◽  
Jason Karch ◽  
Meng C. Wang ◽  
...  

Hyperphosphorylation of the calcium release channel/ryanodine receptor type 2 (RyR2) at serine 2814 (S2814) is associated with multiple cardiac diseases including atrial fibrillation and heart failure. Despite recent advances, the molecular mechanisms driving pathological changes associated with RyR2 S2814 phosphorylation are still not well understood. Methods: Using affinity-purification coupled to mass spectrometry (AP-MS), we investigated the RyR2 interactome in ventricles from wild-type (WT) mice and two S2814 knock-in mutants: the unphosphorylated alanine mutant (S2814A) and hyperphosphorylated mimic aspartic acid mutant (S2814D). Western blots were used for validation. Results: In WT mouse ventricular lysates, we identified 22 proteins which were enriched with RyR2 pull-down relative to both IgG control and no antibody (beads-only) pull-downs. Parallel AP-MS using WT, S2814A, and S2814D mouse ventricles identified 72 proteins, with 20 being high confidence RyR2 interactors. Of these, 14 had an increase in their binding to RyR2 S2814A but a decrease in their binding to RyR2 S2814D. We independently validated three protein hits, Idh3b, Aifm1, and Cpt1b, as RyR2 interactors by western blots and showed that Aifm1 and Idh3b had significantly decreased binding to RyR2 S2814D compared to WT and S2814A, consistent with MS findings. Conclusion: By applying state-of-the-art proteomic approaches, we discovered a number of novel RyR2 interactors in the mouse heart. In addition, we found and defined specific alterations in the RyR2 interactome that were dependent on the phosphorylation status of RyR2 at S2814. These findings yield mechanistic insights into RyR2 regulation which may guide future drug designs.


2020 ◽  
Author(s):  
Tianxia Luo ◽  
Ningning Yan ◽  
Mengru Xu ◽  
Fengjuan Dong ◽  
Qian Liang ◽  
...  

Abstract Background: Ryanodine receptor type 2 (RyR2) mediate Ca 2+ release from the endoplasmic and sarcoplasmic reticulum (ER and SR), which is involved in the peripheral coupling of mouse cardiomyocytes, and thereby plays an important role in cardiac contraction. Junctophilin-2 (JPH2, JP2) is anchored to the plasma membrane (PM) and membranes of the ER and SR, and modulates intracellular Ca 2+ handling through regulation of RyR2. However, the potential RyR2 binding region of JPH2 is poorly understood. Methods: The interaction of JPH2 with RyR2 was studied using LC-MS/MS , bioinformatic analysis,co-immunoprecipitation studies in cardiac SR vesicles. GST-pull down analysis was performed to investigate the physical interaction between RyR2 and JPH2 fragments. Immunofluorescent staining was carried out to determine the colocalization of RyR2 and JPH2 in isolated mouse cardiomyocytes. Ion Optix photometry system was used to measure the levels of intracellular Ca 2+ transients in cardiomyocytes isolated from JPH2 knock down mice. Results: We report that (i) JPH2 interacts with RyR2 and (ii) the C terminus of the JPH2 protein can pull down RyR2 receptors. Confocal immunofluorescence imaging indicated that the majority of JPH2 and RyR2 proteins were colocalized near Z-lines. A decrease in the levels of JPH2 expression reduced the amplitude of Ca 2+ transients in cardiomyocytes. Conclusions: This study suggests that the C terminus domain of JPH2 is required for interactions with RyR2 in the context of peripheral coupling of mouse cardiomyocytes, which provide a molecular mechanism for looking for Ca 2+ - related diseases prevention strategies.


Cell Calcium ◽  
2003 ◽  
Vol 34 (3) ◽  
pp. 261-269 ◽  
Author(s):  
Jens H Westhoff ◽  
Sung-Yong Hwang ◽  
R Scott Duncan ◽  
Fumiko Ozawa ◽  
Pompeo Volpe ◽  
...  

Hypertension ◽  
2011 ◽  
Vol 58 (6) ◽  
pp. 1099-1110 ◽  
Author(s):  
Yunzeng Zou ◽  
Yanyan Liang ◽  
Hui Gong ◽  
Ning Zhou ◽  
Hong Ma ◽  
...  

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