Literature DB >> 17611253

Mutation in the alpha-cardiac actin gene associated with apical hypertrophic cardiomyopathy, left ventricular non-compaction, and septal defects.

Lorenzo Monserrat1, Manuel Hermida-Prieto, Xusto Fernandez, Isabel Rodríguez, Carlos Dumont, Laura Cazón, Margarita G Cuesta, Carlos Gonzalez-Juanatey, Jesús Peteiro, Nemesio Alvarez, Manuel Penas-Lado, Alfonso Castro-Beiras.   

Abstract

AIMS: The E101K mutation in the alpha-cardiac actin gene (ACTC) has been associated with apical hypertrophic cardiomyopathy (HCM). As prominent trabeculations were described in some carriers, we screened for the E101K mutation in our index patients with HCM, dilated cardiomyopathy (DCM), or left ventricular non-compaction (LVNC). METHODS AND
RESULTS: Clinical, echocardiographic, and genetic screening by restriction fragment length polymorphism of the ACTC E101K mutation in 247 families with HCM, DCM, or LVNC. The mutation was found in five index patients (one with LVNC and four with HCM). Clinical and morphological data were obtained from 94 family members. Forty-six individuals had cardiomyopathy (43 with the mutation and three with no genetic study): 23 fulfilled criteria for LVNC, 22 were diagnosed as apical HCM, and one had been diagnosed as restrictive cardiomyopathy. There had been one heart transplant and one congestive heart failure death in patients with severe diastolic dysfunction, and five premature sudden deaths. The E101K mutation was not found in 48 unaffected relatives. Septal defects (eight atrial and one ventricular) were found in nine mutant carriers from four families, and were absent in relatives without the mutation (P = 0.003).
CONCLUSION: LVNC and HCM may appear as overlapping entities. The ACTC E101K mutation should be considered in the genetic diagnosis of LVNC, apical HCM, and septal defects.

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Year:  2007        PMID: 17611253     DOI: 10.1093/eurheartj/ehm239

Source DB:  PubMed          Journal:  Eur Heart J        ISSN: 0195-668X            Impact factor:   29.983


  70 in total

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Authors:  Mirco Müller; Antonina Joanna Mazur; Elmar Behrmann; Ralph P Diensthuber; Michael B Radke; Zheng Qu; Christoph Littwitz; Stefan Raunser; Cora-Ann Schoenenberger; Dietmar J Manstein; Hans Georg Mannherz
Journal:  Cell Mol Life Sci       Date:  2012-05-29       Impact factor: 9.261

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Review 3.  Developmental origins of hypertrophic cardiomyopathy phenotypes: a unifying hypothesis.

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Review 7.  Molecular genetics and pathogenesis of cardiomyopathy.

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Review 8.  Cardiogenetics, neurogenetics, and pathogenetics of left ventricular hypertrabeculation/noncompaction.

Authors:  Josef Finsterer
Journal:  Pediatr Cardiol       Date:  2009-01-29       Impact factor: 1.655

Review 9.  Echocardiography in patients with hypertrophic cardiomyopathy: usefulness of old and new techniques in the diagnosis and pathophysiological assessment.

Authors:  Maria-Angela Losi; Stefano Nistri; Maurizio Galderisi; Sandro Betocchi; Franco Cecchi; Iacopo Olivotto; Eustachio Agricola; Piercarlo Ballo; Simona Buralli; Antonello D'Andrea; Arcangelo D'Errico; Donato Mele; Susanna Sciomer; Sergio Mondillo
Journal:  Cardiovasc Ultrasound       Date:  2010-03-17       Impact factor: 2.062

Review 10.  Molecular genetics of congenital atrial septal defects.

Authors:  Maximilian G Posch; Andreas Perrot; Felix Berger; Cemil Ozcelik
Journal:  Clin Res Cardiol       Date:  2009-12-11       Impact factor: 5.460

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