Abnormal Termination of Ca2+ Release Is a Common Defect of RyR2 Mutations Associated With Cardiomyopathies

被引:97
|
作者
Tang, Yijun [1 ]
Tian, Xixi [1 ]
Wang, Ruiwu [1 ]
Fill, Michael [2 ]
Chen, S. R. Wayne [1 ,2 ]
机构
[1] Univ Calgary, Dept Physiol & Pharmacol, Libin Cardiovasc Inst Alberta, Calgary, AB, Canada
[2] Rush Univ, Dept Mol Biophys & Physiol, Med Ctr, Chicago, IL 60612 USA
基金
美国国家卫生研究院; 加拿大健康研究院;
关键词
Ca2+ release termination; cardiac arrhythmias; cardiomyopathies; ryanodine receptor mutations; sarcoplasmic reticulum; CARDIAC RYANODINE RECEPTOR; POLYMORPHIC VENTRICULAR-ARRHYTHMIAS; SUDDEN UNEXPLAINED DEATH; SARCOPLASMIC-RETICULUM; PHOSPHORYLATION SITE; SR CA2+; CALCIUM; HEART; TACHYCARDIA; ACTIVATION;
D O I
10.1161/CIRCRESAHA.111.256560
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Rationale: Naturally occurring mutations in the cardiac ryanodine receptor (RyR2) have been associated with both cardiac arrhythmias and cardiomyopathies. It is clear that delayed afterdepolarization resulting from abnormal activation of sarcoplasmic reticulum Ca2+ release is the primary cause of RyR2-associated cardiac arrhythmias. However, the mechanism underlying RyR2-associated cardiomyopathies is completely unknown. Objective: In the present study, we investigate the role of the NH2-terminal region of RyR2 in and the impact of a number of cardiomyopathy-associated RyR2 mutations on the termination of Ca2+ release. Methods and Results: The 35-residue exon-3 region of RyR2 is associated with dilated cardiomyopathy. Single-cell luminal Ca2+ imaging revealed that the deletion of the first 305 NH2-terminal residues encompassing exon-3 or the deletion of exon-3 itself markedly reduced the luminal Ca2+ threshold at which Ca2+ release terminates and increased the fractional Ca2+ release. Single-cell cytosolic Ca2+ imaging also showed that both RyR2 deletions enhanced the amplitude of store overload-induced Ca2+ transients in HEK293 cells or HL-1 cardiac cells. Furthermore, the RyR2 NH2-terminal mutations, A77V, R176Q/T2504M, R420W, and L433P, which are associated with arrhythmogenic right ventricular displasia type 2, also reduced the threshold for Ca2+ release termination and increased fractional release. The RyR2 A1107M mutation associated with hypertrophic cardiomyopathy had the opposite action (ie, increased the threshold for Ca2+ release termination and reduced fractional release). Conclusions: These results provide the first evidence that the NH2-terminal region of RyR2 is an important determinant of Ca2+ release termination, and that abnormal fractional Ca2+ release attributable to aberrant termination of Ca2+ release is a common defect in RyR2-associated cardiomyopathies. (Circ Res. 2012;110:968-977.)
引用
收藏
页码:968 / U187
页数:25
相关论文
共 50 条
  • [41] Enhanced binding of calmodulin to RyR2 corrects arrhythmogenic channel disorder in CPVT-associated myocytes
    Fukuda, Masakazu
    Yamamoto, Takeshi
    Nishimura, Shigehiko
    Kato, Takayoshi
    Murakami, Wakako
    Hino, Akihiro
    Ono, Makoto
    Tateishi, Hiroki
    Oda, Testuro
    Okuda, Shinichi
    Kobayashi, Shigeki
    Koseki, Noritaka
    Kyushiki, Hiroyuki
    Yano, Masafumi
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2014, 448 (01) : 1 - 7
  • [42] RyR2 regulates Cx43 hemichannel intracellular Ca2+-dependent activation in cardiomyocytes
    Lissoni, Alessio
    Hulpiau, Paco
    Martins-Marques, Tania
    Wang, Nan
    Bultynck, Geert
    Schulz, Rainer
    Witschas, Katja
    Girao, Henrique
    De Smet, Maarten
    Leybaert, Luc
    CARDIOVASCULAR RESEARCH, 2021, 117 (01) : 123 - 136
  • [43] Calmodulin modulates the termination threshold for cardiac ryanodine receptor-mediated Ca2+ release
    Tian, Xixi
    Tang, Yijun
    Liu, Yingjie
    Wang, Ruiwu
    Chen, S. R. Wayne
    BIOCHEMICAL JOURNAL, 2013, 455 : 367 - 375
  • [44] Transgenic CaMKIIδC overexpression uniquely alters cardiac myocyte Ca2+ handling -: Reduced SR Ca2+ load and activated SR Ca2+ release
    Maier, LS
    Zhang, T
    Chen, L
    DeSantiago, J
    Brown, JH
    Bers, DM
    CIRCULATION RESEARCH, 2003, 92 (08) : 904 - 911
  • [45] Membrane associated Ca2+ buffers in the heart
    Lee, Dukgyu
    Michalak, Marek
    BMB REPORTS, 2010, 43 (03) : 151 - 157
  • [46] Identification of ATP-Binding Regions in the RyR1 Ca2+ Release Channel
    Popova, Olga B.
    Baker, Mariah R.
    Tran, Tina P.
    Le, Tri
    Serysheva, Irina I.
    PLOS ONE, 2012, 7 (11):
  • [47] Store overload-induced Ca2+ release as a triggering mechanism for CPVT and MH episodes caused by mutations in RYR and CASQ genes
    MacLennan, David H.
    Chen, S. R. Wayne
    JOURNAL OF PHYSIOLOGY-LONDON, 2009, 587 (13): : 3113 - 3115
  • [48] Ambiguous interactions between diastolic and SR Ca2+ in the regulation of cardiac Ca2+ release
    Sobie, Eric A.
    Williams, George S. B.
    Lederer, W. J.
    JOURNAL OF GENERAL PHYSIOLOGY, 2017, 149 (09) : 846 - 854
  • [49] Ca2+ release flux underlying Ca2+ transients and Ca2+ sparks in skeletal muscle
    Ríos, E
    Brum, G
    FRONTIERS IN BIOSCIENCE-LANDMARK, 2002, 7 : D1195 - D1211
  • [50] Provocation Testing and Therapeutic Response in a Newly Described Channelopathy: RyR2 Calcium Release Deficiency Syndrome
    Ormerod, Julian O. M.
    Ormondroyd, Elizabeth
    Li, Yanhui
    Taylor, John
    Wei, Jinhong
    Guo, Wenting
    Wang, Ruiwu
    Sarton, Caroline N. S.
    McGuire, Karen
    Dreau, Helene M. P.
    Taylor, Jenny C.
    Ginks, Matthew R.
    Rajappan, Kim
    Chen, S. R. Wayne
    Watkins, Hugh
    CIRCULATION-GENOMIC AND PRECISION MEDICINE, 2022, 15 (01): : E003589