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Loss of Tmem106b exacerbates FTLD pathologies and causes motor deficits in progranulin-deficient mice
Xiaolai Zhou1, Mieu Brooks1, Peizhou Jiang1
1Department of Neuroscience, Mayo Clinic, Jacksonville, FL, USA.
Abstract:
Progranulin (PGRN) and transmembrane protein 106B (TMEM106B) are important lysosomal proteins implicated in frontotemporal lobar degeneration (FTLD) and other neurodegenerative disorders. Loss-of-function mutations in progranulin (GRN) are a common cause of FTLD, while TMEM106B variants have been shown to act as disease modifiers in FTLD. Overexpression of TMEM106B leads to lysosomal dysfunction, while loss of Tmem106b ameliorates lysosomal and FTLD-related pathologies in young Grn-/- mice, suggesting that lowering TMEM106B might be an attractive strategy for therapeutic treatment of FTLD-GRN. Here, we generate and characterize older Tmem106b-/- Grn-/- double knockout mice, which unexpectedly show severe motor deficits and spinal cord motor neuron and myelin loss, leading to paralysis and premature death at 11-12 months. Compared to Grn-/- , Tmem106b-/- Grn-/- mice have exacerbated FTLD-related pathologies, including microgliosis, astrogliosis, ubiquitin, and phospho-Tdp43 inclusions, as well as worsening of lysosomal and autophagic deficits. Our findings confirm a functional interaction between Tmem106b and Pgrn and underscore the need to rethink whether modulating TMEM106B levels is a viable therapeutic strategy.
Insights
Progranulin (PGRN) and TMEM106B are key in frontotemporal lobar degeneration (FTLD). Deleting both genes in mice worsened FTLD pathologies, suggesting TMEM106B modulation may not be a viable FTLD therapy.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Progranulin (PGRN) deficiency causes frontotemporal lobar degeneration (FTLD).
- Transmembrane protein 106B (TMEM106B) influences FTLD progression.
- TMEM106B reduction showed therapeutic potential in preclinical models.
Purpose of the Study:
- To investigate the impact of combined PGRN and TMEM106B loss in aged mice.
- To evaluate TMEM106B as a therapeutic target for FTLD-GRN.
Main Methods:
- Generation and characterization of aged Tmem106b-/- Grn-/- double knockout mice.
- Assessment of motor deficits, neuropathology, and lysosomal/autophagic function.
Main Results:
- Double knockout mice exhibited severe motor deficits, paralysis, and premature death.
- Exacerbated FTLD pathologies, including neuroinflammation and TDP-43 inclusions, were observed.
- Lysosomal and autophagic deficits were worsened compared to single knockouts.
Conclusions:
- A functional interaction between TMEM106B and PGRN is confirmed.
- Modulating TMEM106B levels may not be a suitable therapeutic strategy for FTLD-GRN.
- Further research is needed to understand the complex roles of these proteins in neurodegeneration.
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