Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

ABCC9-related Intellectual disability Myopathy Syndrome is a KATP channelopathy with loss-of-function mutations in ABCC9

  • Marie F. Smeland
  • , Conor McClenaghan
  • , Helen I. Roessler
  • , Sanne Savelberg
  • , Geir Åsmund Myge Hansen
  • , Helene Hjellnes
  • , Kjell Arne Arntzen
  • , Kai Ivar Müller
  • , Andreas Rosenberger Dybesland
  • , Theresa Harter
  • , Monica Sala-Rabanal
  • , Chris H. Emfinger
  • , Yan Huang
  • , Soma S. Singareddy
  • , Jamie Gunn
  • , David F. Wozniak
  • , Attila Kovacs
  • , Maarten Massink
  • , Federico Tessadori
  • , Sarah M. Kamel
  • Jeroen Bakkers, Maria S. Remedi, Marijke Van Ghelue, Colin G. Nichols, Gijs van Haaften

Producción científica: Articlerevisión exhaustiva

42 Citas (Scopus)

Resumen

Mutations in genes encoding KATP channel subunits have been reported for pancreatic disorders and Cantú syndrome. Here, we report a syndrome in six patients from two families with a consistent phenotype of mild intellectual disability, similar facies, myopathy, and cerebral white matter hyperintensities, with cardiac systolic dysfunction present in the two oldest patients. Patients are homozygous for a splice-site mutation in ABCC9 (c.1320 + 1 G > A), which encodes the sulfonylurea receptor 2 (SUR2) subunit of KATP channels. This mutation results in an in-frame deletion of exon 8, which results in non-functional KATP channels in recombinant assays. SUR2 loss-of-function causes fatigability and cardiac dysfunction in mice, and reduced activity, cardiac dysfunction and ventricular enlargement in zebrafish. We term this channelopathy resulting from loss-of-function of SUR2-containing KATP channels ABCC9-related Intellectual disability Myopathy Syndrome (AIMS). The phenotype differs from Cantú syndrome, which is caused by gain-of-function ABCC9 mutations, reflecting the opposing consequences of KATP loss- versus gain-of-function.

Idioma originalEnglish
Número de artículo4457
PublicaciónNature Communications
Volumen10
N.º1
DOI
EstadoPublished - dic 1 2019

Nota bibliográfica

Publisher Copyright:
© 2019, The Author(s).

Financiación

First, we thank the patients and families for their participation and consent to publish this work. Help from the following was greatly appreciated: Radiologist Marit Herder (MRI descriptions). Neurologist Synnøve Jensen (neurological examinations), geneticists Ragnhild Glad and Valeria Marton (initial evaluation and diagnostics in the two families). Cardiologists Assami Rösner and Eivind Øygard Fosse (discussion of cardiac features), ENT specialist Dagny Hemmingsen (hearing evaluation), the National Neuromuscular Center, Tromsø, Norway. We acknowledge the support from the E-Rare Joint Transnational Cantú Treat program (I-2101-B26), and NIH grant HL140024 (to CGN). Partial support for the behavioral work was provided by the Intellectual and Developmental Disabilities Research Center at Washington University (NIH/NICHD U54 HD087011; DFW). C.Mc. is supported by American Heart Association Fellowship (19POST34380407).

FinanciadoresNúmero del financiador
American the American Heart Association19POST34380407
Norges IdrettshøgskoleHL140024

    ASJC Scopus subject areas

    • General Chemistry
    • General Biochemistry, Genetics and Molecular Biology
    • General
    • General Physics and Astronomy

    Huella

    Profundice en los temas de investigación de 'ABCC9-related Intellectual disability Myopathy Syndrome is a KATP channelopathy with loss-of-function mutations in ABCC9'. En conjunto forman una huella única.

    Citar esto