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Updated: Jul 17, 2025

Assessment of Spontaneous Alternation, Novel Object Recognition and Limb Clasping in Transgenic Mouse Models of Amyloid-β and Tau Neuropathology
Published on: May 28, 2017
Dual-specificity protein phosphatase 6 (DUSP6) overexpression reduces amyloid load and improves memory deficits in
Background:
Dual specificity protein phosphatase 6 (DUSP6) was recently identified as a key hub gene in a causal network that regulates late-onset Alzheimer's disease. Importantly, decreased DUSP6 levels are correlated with an increased clinical dementia rating in human subjects, and DUSP6 levels are additionally decreased in the 5xFAD amyloidopathy mouse model.
Methods:
AAV5-DUSP6 or AAV5-GFP (control) were stereotactically injected into the dorsal hippocampus (dHc) of female and male 5xFAD or wild type mice to overexpress DUSP6 or GFP. Spatial learning memory of these mice was assessed in the Barnes maze, after which hippocampal tissues were isolated for downstream analysis.
Results:
Barnes maze testing indicated that DUSP6 overexpression in the dHc of 5xFAD mice improved memory deficits and was associated with reduced amyloid plaque load, Aß 1-40 and Aß 1-42 levels, and amyloid precursor protein processing enzyme BACE1, in male but not in female mice. Microglial activation and microgliosis, which are increased in 5xFAD mice, were significantly reduced by dHc DUSP6 overexpression in both males and females. Transcriptomic profiling of female 5xFAD hippocampus revealed upregulated expression of genes involved in inflammatory and extracellular signal-regulated kinase (ERK) pathways, while dHc DUSP6 overexpression in female 5xFAD mice downregulated a subset of genes in these pathways. A limited number of differentially expressed genes (DEGs) (FDR<0.05) were identified in male mice; gene ontology analysis of DEGs (p<0.05) identified a greater number of synaptic pathways that were regulated by DUSP6 overexpression in male compared to female 5xFAD. Notably, the msh homeobox 3 gene, Msx3 , previously shown to regulate microglial M1/M2 polarization and reduce neuroinflammation, was one of the most robustly upregulated genes in female and male wild type and 5xFAD mice overexpressing DUSP6.
Conclusions:
In summary, our data indicate that DUSP6 overexpression in dHc reduced amyloid deposition and memory deficits in male but not female 5xFAD mice, whereas reduced neuroinflammation and microglial activation were observed in both males and females. The sex-dependent regulation of synaptic pathways by DUSP6 overexpression, however, correlated with the improvement of spatial memory deficits in male but not female 5xFAD.
Insights
Dual specificity protein phosphatase 6 (DUSP6) overexpression improved memory and reduced amyloid plaques in male 5xFAD mice. DUSP6 also reduced neuroinflammation in both sexes, highlighting its therapeutic potential for Alzheimer's disease.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Dual specificity protein phosphatase 6 (DUSP6) is a key gene in Alzheimer's disease (AD) pathogenesis.
- Decreased DUSP6 levels correlate with increased dementia severity and are observed in AD mouse models.
Approach:
- Adeno-associated virus serotype 5 (AAV5)-DUSP6 was delivered to the dorsal hippocampus (dHc) of 5xFAD mice.
- Spatial learning and memory were assessed using the Barnes maze, followed by hippocampal tissue analysis.
Key Points:
- DUSP6 overexpression improved memory and reduced amyloid pathology in male 5xFAD mice, but not females.
- Neuroinflammation and microglial activation were reduced by DUSP6 in both sexes.
- Transcriptomic analysis revealed sex-specific regulation of synaptic and inflammatory pathways.
Conclusions:
- DUSP6 shows therapeutic potential for Alzheimer's disease, particularly in males, by improving memory and reducing amyloid burden.
- DUSP6 effectively reduces neuroinflammation and microglial activation in a sex-independent manner.
- Sex-dependent effects of DUSP6 on synaptic pathways warrant further investigation for targeted Alzheimer's therapies.
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