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.
Abstract:
The lipid phosphatase FIG4 is a subunit of the protein complex that regulates biosynthesis of the signaling lipid PI(3,5)P2. Mutations of FIG4 result in juvenile lethality and spongiform neurodegeneration in the mouse, and are responsible for the human disorders Charcot-Marie-Tooth disease, Yunis-Varon syndrome and polymicrogyria with seizures. We previously demonstrated that conditional expression of a wild-type FIG4 transgene in neurons is sufficient to rescue most of the abnormalities of Fig4 null mice, including juvenile lethality and extensive neurodegeneration. To evaluate the contribution of the phosphatase activity to the in vivo function of Fig4, we introduced the mutation p.Cys486Ser into the Sac phosphatase active-site motif CX5RT. Transfection of the Fig4(Cys486Ser) cDNA into cultured Fig4(-/-) fibroblasts was effective in preventing vacuolization. The neuronal expression of an NSE-Fig4(Cys486Ser) transgene in vivo prevented the neonatal neurodegeneration and juvenile lethality seen in Fig4 null mice. These observations demonstrate that the catalytically inactive FIG4 protein provides significant function, possibly by stabilization of the PI(3,5)P2 biosynthetic complex and/or localization of the complex to endolysosomal vesicles. Despite this partial rescue, later in life the NSE-Fig4(Cys486Ser) transgenic mice display significant abnormalities that include hydrocephalus, defective myelination and reduced lifespan. The late onset phenotype of the NSE-Fig4(Cys486Ser) transgenic mice demonstrates that the phosphatase activity of FIG4 has an essential role in vivo.
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.


