FKBP52 overexpression accelerates hippocampal-dependent memory impairments in a tau transgenic mouse model.
Marangelie Criado-MarreroNiat T GebruLauren A GouldDanielle M BlazierYamile Vidal-AguiarTaylor M SmithSalma S AbdelmaboudLindsey B SheltonXinming WangJan DahrendorffDavid Beaulieu-AbdelahadChad A DickeyLaura J BlairPublished in: NPJ aging and mechanisms of disease (2021)
Abnormal accumulation of hyperphosphorylated tau induces pathogenesis in neurodegenerative diseases, like Alzheimer's disease. Molecular chaperones with peptidyl-prolyl cis/trans isomerase (PPIase) activity are known to regulate these processes. Previously, in vitro studies have shown that the 52 kDa FK506-binding protein (FKBP52) interacts with tau inducing its oligomerization and fibril formation to promote toxicity. Thus, we hypothesized that increased expression of FKBP52 in the brains of tau transgenic mice would alter tau phosphorylation and neurofibrillary tangle formation ultimately leading to memory impairments. To test this, tau transgenic (rTg4510) and wild-type mice received bilateral hippocampal injections of virus overexpressing FKBP52 or GFP control. We examined hippocampal-dependent memory, synaptic plasticity, tau phosphorylation status, and neuronal health. This work revealed that rTg4510 mice overexpressing FKBP52 had impaired spatial learning, accompanied by long-term potentiation deficits and hippocampal neuronal loss, which was associated with a modest increase in total caspase 12. Together with previous studies, our findings suggest that FKBP52 may sensitize neurons to tau-mediated dysfunction via activation of a caspase-dependent pathway, contributing to memory and learning impairments.
Keyphrases
- cerebrospinal fluid
- wild type
- binding protein
- cerebral ischemia
- working memory
- mouse model
- public health
- cell death
- cell proliferation
- oxidative stress
- traumatic brain injury
- mental health
- poor prognosis
- transcription factor
- protein kinase
- blood brain barrier
- spinal cord injury
- high fat diet induced
- subarachnoid hemorrhage
- brain injury
- cognitive decline
- skeletal muscle
- long non coding rna
- metabolic syndrome
- risk assessment
- heat stress
- health information