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Loss of ADAMTS19 causes progressive non-syndromic heart valve disease.
Wünnemann, Florian; Ta-Shma, Asaf; Preuss, Christoph; Leclerc, Severine; van Vliet, Patrick Piet; Oneglia, Andrea; Thibeault, Maryse; Nordquist, Emily; Lincoln, Joy; Scharfenberg, Franka; Becker-Pauly, Christoph; Hofmann, Philipp; Hoff, Kirstin; Audain, Enrique; Kramer, Hans-Heiner; Makalowski, Wojciech; Nir, Amiram; Gerety, Sebastian S; Hurles, Matthew; Comes, Johanna; Fournier, Anne; Osinska, Hanna; Robins, Jeffrey; Pucéat, Michel; Elpeleg, Orly; Hitz, Marc-Phillip; Andelfinger, Gregor.
Afiliación
  • Wünnemann F; Cardiovascular Genetics, Department of Pediatrics, Centre Hospitalier Universitaire Sainte-Justine Research Centre, University of Montreal, Montreal, Quebec, Canada.
  • Ta-Shma A; Institute of Bioinformatics, University of Münster, Münster, Germany.
  • Preuss C; Department of Pediatric Cardiology, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
  • Leclerc S; Monique and Jacques Robo Department of Genetic Research, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
  • van Vliet PP; The Jackson Laboratory, Bar Harbor, ME, USA.
  • Oneglia A; Cardiovascular Genetics, Department of Pediatrics, Centre Hospitalier Universitaire Sainte-Justine Research Centre, University of Montreal, Montreal, Quebec, Canada.
  • Thibeault M; Cardiovascular Genetics, Department of Pediatrics, Centre Hospitalier Universitaire Sainte-Justine Research Centre, University of Montreal, Montreal, Quebec, Canada.
  • Nordquist E; LIA (International Associated Laboratory) Centre Hospitalier Universitaire Sainte-Justine, Montreal, Quebec, Canada.
  • Lincoln J; LIA (International Associated Laboratory) INSERM, Marseille, France.
  • Scharfenberg F; Cardiovascular Genetics, Department of Pediatrics, Centre Hospitalier Universitaire Sainte-Justine Research Centre, University of Montreal, Montreal, Quebec, Canada.
  • Becker-Pauly C; Cardiovascular Genetics, Department of Pediatrics, Centre Hospitalier Universitaire Sainte-Justine Research Centre, University of Montreal, Montreal, Quebec, Canada.
  • Hofmann P; Molecular, Cellular and Developmental Biology Graduate Program, The Ohio State University, Columbus, OH, USA.
  • Hoff K; Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI, USA.
  • Audain E; Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI, USA.
  • Kramer HH; Division of Pediatric Cardiology, Herma Heart Institute, Children's Hospital of Wisconsin, Milwaukee, WI, USA.
  • Makalowski W; Unit for Degradomics of the Protease Web, Institute of Biochemistry, University of Kiel, Kiel, Germany.
  • Nir A; Unit for Degradomics of the Protease Web, Institute of Biochemistry, University of Kiel, Kiel, Germany.
  • Gerety SS; Department of Congenital Heart Disease and Pediatric Cardiology, University Hospital Schleswig-Holstein, Kiel, Germany.
  • Hurles M; Department of Congenital Heart Disease and Pediatric Cardiology, University Hospital Schleswig-Holstein, Kiel, Germany.
  • Comes J; German Centre for Cardiovascular Research (DZHK), Kiel, Germany.
  • Fournier A; Department of Congenital Heart Disease and Pediatric Cardiology, University Hospital Schleswig-Holstein, Kiel, Germany.
  • Osinska H; German Centre for Cardiovascular Research (DZHK), Kiel, Germany.
  • Robins J; Department of Congenital Heart Disease and Pediatric Cardiology, University Hospital Schleswig-Holstein, Kiel, Germany.
  • Pucéat M; German Centre for Cardiovascular Research (DZHK), Kiel, Germany.
  • Elpeleg O; Department of Pediatric Cardiology, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
  • Hitz MP; Wellcome Sanger Institute, Cambridge, UK.
  • Andelfinger G; Wellcome Sanger Institute, Cambridge, UK.
Nat Genet ; 52(1): 40-47, 2020 01.
Article en En | MEDLINE | ID: mdl-31844321
Valvular heart disease is observed in approximately 2% of the general population1. Although the initial observation is often localized (for example, to the aortic or mitral valve), disease manifestations are regularly observed in the other valves and patients frequently require surgery. Despite the high frequency of heart valve disease, only a handful of genes have so far been identified as the monogenic causes of disease2-7. Here we identify two consanguineous families, each with two affected family members presenting with progressive heart valve disease early in life. Whole-exome sequencing revealed homozygous, truncating nonsense alleles in ADAMTS19 in all four affected individuals. Homozygous knockout mice for Adamts19 show aortic valve dysfunction, recapitulating aspects of the human phenotype. Expression analysis using a lacZ reporter and single-cell RNA sequencing highlight Adamts19 as a novel marker for valvular interstitial cells; inference of gene regulatory networks in valvular interstitial cells positions Adamts19 in a highly discriminatory network driven by the transcription factor lymphoid enhancer-binding factor 1 downstream of the Wnt signaling pathway. Upregulation of endocardial Krüppel-like factor 2 in Adamts19 knockout mice precedes hemodynamic perturbation, showing that a tight balance in the Wnt-Adamts19-Klf2 axis is required for proper valve maturation and maintenance.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Regulación del Desarrollo de la Expresión Génica / Proteínas ADAMTS / Enfermedades de las Válvulas Cardíacas Tipo de estudio: Etiology_studies / Prognostic_studies Límite: Animals / Female / Humans / Male Idioma: En Revista: Nat Genet Asunto de la revista: GENETICA MEDICA Año: 2020 Tipo del documento: Article País de afiliación: Canadá

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Regulación del Desarrollo de la Expresión Génica / Proteínas ADAMTS / Enfermedades de las Válvulas Cardíacas Tipo de estudio: Etiology_studies / Prognostic_studies Límite: Animals / Female / Humans / Male Idioma: En Revista: Nat Genet Asunto de la revista: GENETICA MEDICA Año: 2020 Tipo del documento: Article País de afiliación: Canadá