Restrictive cardiomyopathy (RCM) is an uncommon heart muscle disorder characterized by impaired filling of the ventricles with reduced volume in the presence of normal or near normal wall thickness and systolic function. The disease may be associated with systemic disease but is most often idiopathic. We recognized a large family in which individuals were affected by either idiopathic RCM or hypertrophic cardiomyopathy (HCM). Linkage analysis to selected sarcomeric contractile protein genes identified cardiac troponin I (TNNI3) as the likely disease gene. Subsequent mutation analysis revealed a novel missense mutation, which cosegregated with the disease in the family (lod score: 4.8). To determine if idiopathic RCM is part of the clinical expression of TNNI3 mutations, genetic investigations of the gene were performed in an additional nine unrelated RCM patients with restrictive filling patterns, bi-atrial dilatation, normal systolic function, and normal wall thickness. TNNI3 mutations were identified in six of these nine RCM patients. Two of the mutations identified in young individuals were de novo mutations. All mutations appeared in conserved and functionally important domains of the gene.
Jens Mogensen, Toru Kubo, Mauricio Duque, William Uribe, Anthony Shaw, Ross Murphy, Juan R. Gimeno, Perry Elliott, William J. McKenna
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Genetic Evaluation of Familial Cardiomyopathy
DP Judge, NM Johnson |
Journal of Cardiovascular Translational Research | 2008 |
Genotype phenotype correlations of cardiac beta-myosin heavy chain mutations in Indian patients with hypertrophic and dilated cardiomyopathy
TS Rai, S Ahmad, A Bahl, M Ahuja, TS Ahluwalia, B Singh, KK Talwar, M Khullar |
Molecular and Cellular Biochemistry | 2008 |
Cardiac troponin T mutation in familial cardiomyopathy with variable remodeling and restrictive physiology
SC Menon, VV Michels, PA Pellikka, JD Ballew, ML Karst, KJ Herron, SM Nelson, RJ Rodeheffer, TM Olson |
Clinical Genetics | 2008 |
Klassifikation, genetische Prädisposition und Risikofaktoren für die Entwicklung einer Kardiomyopathie
S Pankuweit, A Richter, V Ruppert, R Funck, B Maisch |
Der Internist | 2008 |
Myosin Transducer Mutations Differentially Affect Motor Function, Myofibril Structure, and the Performance of Skeletal and Cardiac Muscles
A Cammarato, CM Dambacher, AF Knowles, WA Kronert, R Bodmer, K Ocorr, SI Bernstein, T Pollard |
Molecular biology of the cell | 2008 |
Canadian Cardiovascular Society Consensus Conference guidelines on heart failure--2008 update: best practices for the transition of care of heart failure patients, and the recognition, investigation and treatment of cardiomyopathies.
Malcom J, Arnold O, Howlett JG, Ducharme A, Ezekowitz JA, Gardner M, Giannetti N, Haddad H, Heckman GA, Isaac D, Jong P, Liu P, Mann E, McKelvie RS, Moe GW, Svendsen AM, Tsuyuki RT, O'Halloran K, Ross HJ, Sequeira EJ, White M |
The Canadian journal of cardiology | 2008 |
Extracardiac Medical and Neuromuscular Implications in Restrictive Cardiomyopathy
C Stöllberger, J Finsterer |
Clinical Cardiology | 2007 |
The genetics of cardiomyopathies: What clinicians should know
R Deo, CA MacRae |
Current Heart Failure Reports | 2007 |
Phenotypic Plasticity of Sarcomeric Protein Mutations⁎⁎Editorials published in the Journal of the American College of Cardiology reflect the views of the authors and do not necessarily represent the views of JACC or the American College of Cardiology
AJ Marian |
Journal of the American College of Cardiology | 2007 |
ACE I/D polymorphism in Indian patients with hypertrophic cardiomyopathy and dilated cardiomyopathy.
Rai TS, Dhandapany PS, Ahluwalia TS, Bhardwaj M, Bahl A, Talwar KK, Nair K, Rathinavel A, Khullar M |
Molecular and Cellular Biochemistry | 2007 |
Beta-adrenergic receptors signaling and heart failure in mice, rabbits and humans
AJ Marian |
Journal of Molecular and Cellular Cardiology | 2006 |
Genome–environment interactions in the molecular pathogenesis of dilated cardiomyopathy
W Poller, U Kühl, C Tschoepe, M Pauschinger, H Fechner, HP Schultheiss |
Journal of Molecular Medicine | 2005 |
Historical trends in reported survival rates in patients with hypertrophic cardiomyopathy
PM Elliott, JR Gimeno, R Thaman, J Shah, D Ward, S Dickie, MT Esteban, WJ McKenna |
Heart (British Cardiac Society) | 2005 |
Myocardial late gadolinium enhancement cardiovascular magnetic resonance in hypertrophic cardiomyopathy caused by mutations in troponin I
JC Moon, J Mogensen, PM Elliott, GC Smith, AG Elkington, SK Prasad, DJ Pennell, WJ McKenna |
Heart (British Cardiac Society) | 2005 |
Structural based insights into the role of troponin in cardiac muscle pathophysiology
MX Li, X Wang, BD Sykes |
Journal of Muscle Research and Cell Motility | 2004 |
Induction and reversal of cardiac phenotype of human hypertrophic cardiomyopathy mutation cardiac troponin T-Q92 in switch on-switch off bigenic mice
S Lutucuta, N Tsybouleva, M Ishiyama, G Defreitas, L Wei, B Carabello, AJ Marian |
Journal of the American College of Cardiology | 2004 |
Disruption of Caenorhabditis elegans muscle structure and function caused by mutation of troponin I.
Burkeen AK, Maday SL, Rybicka KK, Sulcove JA, Ward J, Huang MM, Barstead R, Franzini-Armstrong C, Allen TS |
Biophysical Journal | 2004 |
Genotype, phenotype: upstairs, downstairs in the family of cardiomyocytes
Kenneth Chien |
Journal of Clinical Investigation | 2003 |