Arrhythmogenesis in Timothy Syndrome is associated with defects in Ca2+-dependent inactivation

被引:68
作者
Dick, Ivy E. [1 ,2 ]
Joshi-Mukherjee, Rosy [1 ,2 ]
Yang, Wanjun [1 ,2 ]
Yue, David T. [1 ,2 ]
机构
[1] Johns Hopkins Univ, Sch Med, Dept Biomed Engn, Calcium Signals Lab, Ross Bldg,Room 713,720 Rutland Ave, Baltimore, MD 21205 USA
[2] Johns Hopkins Univ, Sch Med, Dept Neurosci, Calcium Signals Lab, Ross Bldg,Room 713,720 Rutland Ave, Baltimore, MD 21205 USA
关键词
LONG QT SYNDROME; VOLTAGE-DEPENDENT-INACTIVATION; RAT VENTRICULAR MYOCYTES; OF-FUNCTION MUTATIONS; SUDDEN CARDIAC DEATH; CALCIUM-CHANNEL; CA2+ CHANNELS; SELECTIVITY; CALMODULIN; CACNA1C;
D O I
10.1038/ncomms10370
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Timothy Syndrome (TS) is a multisystem disorder, prominently featuring cardiac action potential prolongation with paroxysms of life-threatening arrhythmias. The underlying defect is a single de novo missense mutation in Ca(V)1.2 channels, either G406R or G402S. Notably, these mutations are often viewed as equivalent, as they produce comparable defects in voltage-dependent inactivation and cause similar manifestations in patients. Yet, their effects on calcium-dependent inactivation (CDI) have remained uncertain. Here, we find a significant defect in CDI in TS channels, and uncover a remarkable divergence in the underlying mechanism for G406R versus G402S variants. Moreover, expression of these TS channels in cultured adult guinea pig myocytes, combined with a quantitative ventricular myocyte model, reveals a threshold behaviour in the induction of arrhythmias due to TS channel expression, suggesting an important therapeutic principle: a small shift in the complement of mutant versus wild-type channels may confer significant clinical improvement.
引用
收藏
页数:12
相关论文
共 61 条
[1]  
ADAMS PJ, 2007, BIOPH J ABSTR, V2869, pA602
[2]   Engineered calmodulins reveal the unexpected eminence of Ca2+ channel inactivation in controlling heart excitation [J].
Alseikhan, BA ;
DeMaria, CD ;
Colecraft, HM ;
Yue, DT .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (26) :17185-17190
[3]   Loss-of-function mutations in the cardiac calcium channel underlie a new clinical entity characterized by ST-Segment elevation, short QT intervals, and sudden cardiac death [J].
Antzelevitch, Charles ;
Pollevick, Guido D. ;
Cordeiro, Jonathan M. ;
Casis, Oscar ;
Sanguinetti, Michael C. ;
Aizawa, Yoshiyasu ;
Guerchicoff, Alejandra ;
Pfeiffer, Ryan ;
Oliva, Antonio ;
Wollnik, Bernd ;
Gelber, Philip ;
Bonaros, Elias P., Jr. ;
Burashnikov, Elena ;
Wu, Yuesheng ;
Sargent, John D. ;
Schickel, Stefan ;
Oberheiden, Ralf ;
Bhatia, Atul ;
Hsu, Li-Fern ;
Haissaguerre, Michel ;
Schimpf, Rainer ;
Borggrefe, Martin ;
Wolpert, Christian .
CIRCULATION, 2007, 115 (04) :442-449
[4]   Profile of L-type Ca2+ current and Na+/Ca2+ exchange current during cardiac action potential in ventricular myocytes [J].
Banyasz, Tamas ;
Horvath, Balazs ;
Jian, Zhong ;
Izu, Leighton T. ;
Ye Chen-Izu .
HEART RHYTHM, 2012, 9 (01) :134-142
[5]   The Timothy syndrome mutation differentially affects voltage- and calcium-dependent inactivation of CaV1.2 L-type calcium channels [J].
Barrett, Curtis F. ;
Tsien, Richard W. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (06) :2157-2162
[6]   Novel Timothy syndrome mutation leading to increase in CACNA1C window current [J].
Boczek, Nicole J. ;
Miller, Erin M. ;
Ye, Dan ;
Nesterenko, Vladislav V. ;
Tester, David J. ;
Antzelevitch, Charles ;
Czosek, Richard J. ;
Ackerman, Michael J. ;
Ware, Stephanie M. .
HEART RHYTHM, 2015, 12 (01) :211-219
[7]   Exome Sequencing and Systems Biology Converge to Identify Novel Mutations in the L-Type Calcium Channel, CACNA1C, Linked to Autosomal Dominant Long QT Syndrome [J].
Boczek, Nicole J. ;
Best, Jabe M. ;
Tester, David J. ;
Giudicessi, John R. ;
Middha, Sumit ;
Evans, Jared M. ;
Kamp, Timothy J. ;
Ackerman, Michael J. .
CIRCULATION-CARDIOVASCULAR GENETICS, 2013, 6 (03) :279-289
[8]   Bursts of action potential waveforms relieve G-protein inhibition of recombinant P/Q-type Ca2+ channels in HEK 293 cells [J].
Brody, DL ;
Patil, PG ;
Mulle, JG ;
Snutch, TP ;
Yue, DT .
JOURNAL OF PHYSIOLOGY-LONDON, 1997, 499 (03) :637-644
[9]   Mutations in the cardiac L-type calcium channel associated with inherited J-wave syndromes and sudden cardiac death [J].
Burashnikov, Elena ;
Pfeiffer, Ryan ;
Barajas-Martinez, Hector ;
Delpon, Eva ;
Hu, Dan ;
Desai, Mayurika ;
Borggrefe, Martin ;
Haeissaguerre, Michel ;
Kanter, Ronald ;
Pollevick, Guido D. ;
Guerchicoff, Alejandra ;
Laino, Ruben ;
Marieb, Mark ;
Nademanee, Koonlawee ;
Nam, Gi-Byoung ;
Robles, Roberto ;
Schimpf, Rainer ;
Stapleton, Dwight D. ;
Viskin, Sami ;
Winters, Stephen ;
Wolpert, Christian ;
Zimmern, Samuel ;
Veltmann, Christian ;
Antzelevitch, Charles .
HEART RHYTHM, 2010, 7 (12) :1872-1882
[10]   Altered frequency-dependent inactivation and steady-state inactivation of polyglutamine-expanded α1A in SCA6 [J].
Chen, Haiyan ;
Piedras-Renteria, Erika S. .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2007, 292 (03) :C1078-C1086