Galnt1 is required for normal heart valve development and cardiac function

PLoS One. 2015 Jan 23;10(1):e0115861. doi: 10.1371/journal.pone.0115861. eCollection 2015.

Abstract

Congenital heart valve defects in humans occur in approximately 2% of live births and are a major source of compromised cardiac function. In this study we demonstrate that normal heart valve development and cardiac function are dependent upon Galnt1, the gene that encodes a member of the family of glycosyltransferases (GalNAc-Ts) responsible for the initiation of mucin-type O-glycosylation. In the adult mouse, compromised cardiac function that mimics human congenital heart disease, including aortic and pulmonary valve stenosis and regurgitation; altered ejection fraction; and cardiac dilation, was observed in Galnt1 null animals. The underlying phenotype is aberrant valve formation caused by increased cell proliferation within the outflow tract cushion of developing hearts, which is first detected at developmental stage E11.5. Developing valves from Galnt1 deficient animals displayed reduced levels of the proteases ADAMTS1 and ADAMTS5, decreased cleavage of the proteoglycan versican and increased levels of other extracellular matrix proteins. We also observed increased BMP and MAPK signaling. Taken together, the ablation of Galnt1 appears to disrupt the formation/remodeling of the extracellular matrix and alters conserved signaling pathways that regulate cell proliferation. Our study provides insight into the role of this conserved protein modification in cardiac valve development and may represent a new model for idiopathic valve disease.

Publication types

  • Research Support, N.I.H., Intramural

MeSH terms

  • ADAM Proteins / metabolism
  • ADAMTS1 Protein
  • ADAMTS5 Protein
  • Animals
  • Cell Proliferation
  • Disease Models, Animal
  • Embryo, Mammalian / physiopathology*
  • Extracellular Matrix Proteins / metabolism
  • Heart Defects, Congenital / genetics
  • Heart Defects, Congenital / pathology*
  • Heart Defects, Congenital / physiopathology
  • Heart Valves / pathology
  • Heart Valves / physiopathology*
  • Humans
  • MAP Kinase Signaling System
  • Mice
  • N-Acetylgalactosaminyltransferases / genetics*
  • N-Acetylgalactosaminyltransferases / metabolism*
  • Polypeptide N-acetylgalactosaminyltransferase

Substances

  • Extracellular Matrix Proteins
  • N-Acetylgalactosaminyltransferases
  • ADAM Proteins
  • ADAMTS1 Protein
  • ADAMTS5 Protein
  • Adamts1 protein, mouse
  • Adamts5 protein, mouse