Rescue of neurodegeneration in the Fig4 null mouse by a catalytically inactive FIG4 transgene

Guy M Lenk1, Christen M Frei2, Ashley C Miller2

  • 1Department of Human Genetics, glenk@umich.edu.

Human Molecular Genetics
|November 26, 2015
PubMed

Insights

The inactive FIG4 protein partially rescues neurodegeneration and lethality in mice, but its phosphatase activity is essential for long-term health and preventing later-onset neurological defects.

Area of Science:

  • Molecular Biology
  • Neuroscience
  • Genetics

Background:

  • FIG4 is a lipid phosphatase crucial for PI(3,5)P2 signaling lipid biosynthesis.
  • FIG4 mutations cause severe neurodegenerative disorders in humans and mice, including juvenile lethality.

Purpose of the Study:

  • To investigate the role of FIG4's catalytic activity in its in vivo function.
  • To determine if a catalytically inactive FIG4 can rescue disease phenotypes.

Main Methods:

  • Generated a catalytically inactive FIG4 mutant (p.Cys486Ser).
  • Assessed FIG4(Cys486Ser) function in cultured cells and in transgenic mice expressing the mutant in neurons.

Main Results:

  • Catalytically inactive FIG4 prevented vacuolization in cultured cells.
  • Neuronal expression of inactive FIG4 rescued neonatal neurodegeneration and juvenile lethality in mice.
  • However, inactive FIG4 mice developed late-onset hydrocephalus, myelination defects, and reduced lifespan.

Conclusions:

  • FIG4's phosphatase-independent functions, like complex stabilization, are vital for early survival.
  • FIG4's catalytic activity is essential for preventing late-onset neurological abnormalities and ensuring normal lifespan.