نتایج جستجو برای: mybpc3

تعداد نتایج: 307  

2016
Giulia Frisso Nicola Detta Pamela Coppola Cristina Mazzaccara Maria Rosaria Pricolo Antonio D’Onofrio Giuseppe Limongelli Raffaele Calabrò Francesco Salvatore

Point mutations are the most common cause of inherited diseases. Bioinformatics tools can help to predict the pathogenicity of mutations found during genetic screening, but they may work less well in determining the effect of point mutations in non-coding regions. In silico analysis of intronic variants can reveal their impact on the splicing process, but the consequence of a given substitution...

Journal: :Journal of the American College of Cardiology 2010
Francesca Girolami Carolyn Y Ho Christopher Semsarian Massimo Baldi Melissa L Will Katia Baldini Francesca Torricelli Laura Yeates Franco Cecchi Michael J Ackerman Iacopo Olivotto

OBJECTIVES The aim of this study was to describe the clinical profile associated with triple sarcomere gene mutations in a large hypertrophic cardiomyopathy (HCM) cohort. BACKGROUND In patients with HCM, double or compound sarcomere gene mutation heterozygosity might be associated with earlier disease onset and more severe outcome. The occurrence of triple mutations has not been reported. M...

Journal: :Journal of medical genetics 2006
R H Lekanne Deprez J J Muurling-Vlietman J Hruda M J H Baars L C D Wijnaendts I Stolte-Dijkstra M Alders J M van Hagen

BACKGROUND Idiopathic (primary) hypertrophic cardiomyopathy (HCM) is mainly caused by mutations in genes encoding sarcomeric proteins. One of the most commonly mutated HCM genes is the myosin binding protein C (MYBPC3) gene. Mutations in this gene lead mainly to truncation of the protein which gives rise to a relatively mild phenotype. Pure HCM in neonates is rare and most of the time childhood...

2013
Giulia Mearini Doreen Stimpel Elisabeth Krämer Birgit Geertz Ingke Braren Christina Gedicke-Hornung Guillaume Précigout Oliver J Müller Hugo A Katus Thomas Eschenhagen Thomas Voit Luis Garcia Stéphanie Lorain Lucie Carrier

RNA trans-splicing has been explored as a therapeutic option for a variety of genetic diseases, but not for cardiac genetic disease. Hypertrophic cardiomyopathy (HCM) is an autosomal-dominant disease, characterized by left ventricular hypertrophy (LVH) and diastolic dysfunction. MYBPC3, encoding cardiac myosin-binding protein C (cMyBP-C) is frequently mutated. We evaluated the 5'-trans-splicing...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2015
Jianming Jiang Patrick G Burgon Hiroko Wakimoto Kenji Onoue Joshua M Gorham Caitlin C O'Meara Gregory Fomovsky Bradley K McConnell Richard T Lee J G Seidman Christine E Seidman

Homozygous cardiac myosin binding protein C-deficient (Mybpc(t/t)) mice develop dramatic cardiac dilation shortly after birth; heart size increases almost twofold. We have investigated the mechanism of cardiac enlargement in these hearts. Throughout embryogenesis myocytes undergo cell division while maintaining the capacity to pump blood by rapidly disassembling and reforming myofibrillar compo...

2011
Roberta Roncarati Michael VG Latronico Beatrice Musumeci Stefania Aurino Annalaura Torella Marie-Louise Bang Gloria Saccani Jotti Annibale A Puca Massimo Volpe Vincenzo Nigro Camillo Autore Gianluigi Condorelli

Hypertrophic cardiomyopathy (HCM) is the most common genetic cardiac disease. Fourteen sarcomeric and sarcomere-related genes have been implicated in HCM etiology, those encoding β-myosin heavy chain (MYH7) and cardiac myosin binding protein C (MYBPC3) reported as the most frequently mutated: in fact, these account for around 50% of all cases related to sarcomeric gene mutations, which are coll...

Journal: :American journal of physiology. Heart and circulatory physiology 2014
David Barefield Mohit Kumar Pieter P de Tombe Sakthivel Sadayappan

The etiology of hypertrophic cardiomyopathy (HCM) has been ascribed to mutations in genes encoding sarcomere proteins. In particular, mutations in MYBPC3, a gene which encodes cardiac myosin binding protein-C (cMyBP-C), have been implicated in over one third of HCM cases. Of these mutations, 70% are predicted to result in C'-truncated protein products, which are undetectable in tissue samples. ...

Journal: :Circulation. Heart failure 2012
Sabine J van Dijk E Rosalie Paalberends Aref Najafi Michelle Michels Sakthivel Sadayappan Lucie Carrier Nicky M Boontje Diederik W D Kuster Marjon van Slegtenhorst Dennis Dooijes Cris dos Remedios Folkert J ten Cate Ger J M Stienen Jolanda van der Velden

BACKGROUND Hypertrophic cardiomyopathy (HCM), typically characterized by asymmetrical left ventricular hypertrophy, frequently is caused by mutations in sarcomeric proteins. We studied if changes in sarcomeric properties in HCM depend on the underlying protein mutation. METHODS AND RESULTS Comparisons were made between cardiac samples from patients carrying a MYBPC3 mutation (MYBPC3(mut); n=1...

Journal: :Circulation 1998
P Charron O Dubourg M Desnos M Bennaceur L Carrier A C Camproux R Isnard A Hagege J M Langlard G Bonne P Richard B Hainque J B Bouhour K Schwartz M Komajda

BACKGROUND Little information is available on phenotype-genotype correlations in familial hypertrophic cardiomyopathy that are related to the cardiac myosin binding protein C (MYBPC3) gene. The aim of this study was to perform this type of analysis. METHODS AND RESULTS We studied 76 genetically affected subjects from nine families with seven recently identified mutations (SASint20, SDSint7, S...

Journal: :JCI insight 2017
Benjamin R Nixon Alexandra F Williams Michael S Glennon Alejandro E de Feria Sara C Sebag H Scott Baldwin Jason R Becker

It remains unclear how perturbations in cardiomyocyte sarcomere function alter postnatal heart development. We utilized murine models that allowed manipulation of cardiac myosin-binding protein C (MYBPC3) expression at critical stages of cardiac ontogeny to study the response of the postnatal heart to disrupted sarcomere function. We discovered that the hyperplastic to hypertrophic transition p...

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