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CRISPLD1: a novel conserved target in the transition to human heart failure.
Khadjeh, Sara; Hindmarsh, Vanessa; Weber, Frederike; Cyganek, Lukas; Vidal, Ramon O; Torkieh, Setare; Streckfuss-Bömeke, Katrin; Lbik, Dawid; Tiburcy, Malte; Mohamed, Belal A; Bonn, Stefan; Toischer, Karl; Hasenfuss, Gerd.
Afiliación
  • Khadjeh S; Laboratory of Experimental Cardiology, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Goettingen, Robert-Koch-Str. 40, 37075, Göttingen, Germany. sara.khadjeh@med.uni-goettingen.de.
  • Hindmarsh V; German Centre for Cardiovascular Research (DZHK), partner site Goettingen, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Göttingen, Robert-Koch-Str. 42a, 37075, Göttingen, Germany. sara.khadjeh@med.uni-goettingen.de.
  • Weber F; Laboratory of Experimental Cardiology, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Goettingen, Robert-Koch-Str. 40, 37075, Göttingen, Germany.
  • Cyganek L; German Centre for Cardiovascular Research (DZHK), partner site Goettingen, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Göttingen, Robert-Koch-Str. 42a, 37075, Göttingen, Germany.
  • Vidal RO; Laboratory of Experimental Cardiology, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Goettingen, Robert-Koch-Str. 40, 37075, Göttingen, Germany.
  • Torkieh S; Stem Cell Unit, Clinic for Cardiology and Pneumology, University Medical Center Goettingen, Göttingen, Germany.
  • Streckfuss-Bömeke K; German Centre for Cardiovascular Research (DZHK), partner site Goettingen, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Göttingen, Robert-Koch-Str. 42a, 37075, Göttingen, Germany.
  • Lbik D; Stem Cell Unit, Clinic for Cardiology and Pneumology, University Medical Center Goettingen, Göttingen, Germany.
  • Tiburcy M; German Center for Neurodegenerative Diseases (DZNE) Goettingen Site, Göttingen, Germany.
  • Mohamed BA; Scientific Genomics Platform, BIMSB, Max Delbrück Center for Molecular Medicine, Berlin, Germany.
  • Bonn S; Laboratory of Experimental Cardiology, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Goettingen, Robert-Koch-Str. 40, 37075, Göttingen, Germany.
  • Toischer K; Laboratory of Experimental Cardiology, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Goettingen, Robert-Koch-Str. 40, 37075, Göttingen, Germany.
  • Hasenfuss G; German Centre for Cardiovascular Research (DZHK), partner site Goettingen, Clinic for Cardiology and Pneumology, Heart Research Center, University Medical Center Göttingen, Robert-Koch-Str. 42a, 37075, Göttingen, Germany.
Basic Res Cardiol ; 115(3): 27, 2020 03 07.
Article en En | MEDLINE | ID: mdl-32146539
Heart failure is a major health problem worldwide with a significant morbidity and mortality rate. Although studied extensively in animal models, data from patients at the compensated disease stage are lacking. We sampled myocardium biopsies from aortic stenosis patients with compensated hypertrophy and moderate heart failure and used transcriptomics to study the transition to failure. Sequencing and comparative analysis of analogous samples of mice with transverse aortic constriction identified 25 candidate genes with similar regulation in response to pressure overload, reflecting highly conserved molecular processes. The gene cysteine-rich secretory protein LCCL domain containing 1 (CRISPLD1) is upregulated in the transition to failure in human and mouse and its function is unknown. Homology to ion channel regulatory toxins suggests a role in Ca2+ cycling. CRISPR/Cas9-mediated loss-of-function leads to dysregulated Ca2+ handling in human-induced pluripotent stem cell-derived cardiomyocytes. The downregulation of prohypertrophic, proapoptotic and Ca2+-signaling pathways upon CRISPLD1-KO and its upregulation in the transition to failure implicates a contribution to adverse remodeling. These findings provide new pathophysiological data on Ca2+ regulation in the transition to failure and novel candidate genes with promising potential for therapeutic interventions.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Moléculas de Adhesión Celular / Calcio / Evolución Molecular / Señalización del Calcio / Insuficiencia Cardíaca Tipo de estudio: Prognostic_studies Límite: Animals / Female / Humans / Male Idioma: En Revista: Basic Res Cardiol Año: 2020 Tipo del documento: Article País de afiliación: Alemania

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Moléculas de Adhesión Celular / Calcio / Evolución Molecular / Señalización del Calcio / Insuficiencia Cardíaca Tipo de estudio: Prognostic_studies Límite: Animals / Female / Humans / Male Idioma: En Revista: Basic Res Cardiol Año: 2020 Tipo del documento: Article País de afiliación: Alemania