14-3-3θ Does Not Protect against Behavioral or Pathological Deficits in Alzheimer's Disease Mouse Models.
Mary GannonBing WangSara Anne StringfellowStephan QuintinItzel MendozaThanushri SrikanthaA Claire RobertsTakashi SaitoTakaomi C SaidoErik D RobersonTalene A YacoubianPublished in: eNeuro (2022)
Alzheimer's disease (AD) is characterized by progressive cognitive impairment associated with synaptic dysfunction and dendritic spine loss and the pathologic hallmarks of β-amyloid (Aβ) plaques and hyperphosphorylated tau tangles. 14-3-3 proteins are a highly conserved family of proteins whose functions include regulation of protein folding, neuronal architecture, and synaptic function. Additionally, 14-3-3s interact with both Aβ and tau, and reduced levels of 14-3-3s have been shown in the brains of AD patients and in AD mouse models. Here, we examine the neuroprotective potential of the 14-3-3θ isoform in AD models. We demonstrate that 14-3-3θ overexpression is protective and 14-3-3θ inhibition is detrimental against oligomeric Aβ-induced neuronal death in primary cortical cultures. Overexpression of 14-3-3θ using an adeno-associated viral (AAV) vector failed to improve performance on behavioral tests, improve Aβ pathology, or affect synaptic density in the J20 AD mouse model. Similarly, crossing a second AD mouse model, the App NL-G-F knock-in (APP KI) mouse, with 14-3-3θ transgenic mice failed to rescue behavioral deficits, reduce Aβ pathology, or impact synaptic density in the APP KI mouse model. 14-3-3θ is likely partially insolubilized in the APP models, as demonstrated by proteinase K digestion. These findings do not support increasing 14-3-3θ expression as a therapeutic approach for AD.
Keyphrases
- mouse model
- cognitive impairment
- neoadjuvant chemotherapy
- transcription factor
- end stage renal disease
- cell proliferation
- traumatic brain injury
- cognitive decline
- newly diagnosed
- prefrontal cortex
- multiple sclerosis
- chronic kidney disease
- oxidative stress
- ejection fraction
- risk assessment
- radiation therapy
- squamous cell carcinoma
- high glucose
- small molecule
- blood brain barrier
- prognostic factors
- subarachnoid hemorrhage
- locally advanced
- patient reported outcomes
- protein protein
- drug induced
- amino acid