Familial Danish dementia young Knock-in rats expressing humanized APP and human Aβ show impaired pre and postsynaptic glutamatergic transmission
Yin, T.; Yao, W.; Norris, K. A.; D'Adamio, L.
Show abstract
Familial British and Danish dementia (FBD and FDD) are two neurodegenerative disorders caused by mutations in the Integral membrane protein 2B (ITM2b). BRI2, the protein encoded by ITM2b, tunes excitatory synaptic transmission at both pre- and post-synaptic terminus. Too, BRI2 interacts with and modulates proteolytic processing of Amyloid-{beta} precursor Protein (APP), whose mutations cause familial forms of Alzheimer disease (FAD). To study pathogenic mechanism triggered by the Danish mutation we generated rats carrying the Danish mutation into the rat Itm2b gene (Itm2bD rats). Given the BRI2/APP interaction and the widely accepted relevance of human A{beta}, a proteolytic product of APP, to AD, Itm2bD rats were engineered to express two humanized App alleles, to produce human A{beta}. Here, we studied young Itm2bD rats to investigate early pathogenic changes. We found that peri-adolescent Itm2bD rats present subtle changes in human A{beta} levels along with decreased spontaneous glutamate release and AMPAR-mediated responses but increased short-term synaptic facilitation in the hippocampal Schaeffer-collateral pathway. These changes are like those observed in adult mice producing rodent A{beta} and carrying either the Danish or British mutations into the mouse Itm2b gene. Collectively, the data show that the pathogenic Danish mutation alters the physiological function of BRI2 at glutamatergic synapses; these functional alterations are detected across species and occur early in life. Future studies will be needed to determine whether this phenomenon represents an early pathogenic event in human dementia.
Matching journals
The top 12 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Heightened β-adrenergic receptor function in the TgF344-AD rat model drives synaptic potentiation and supports learning and memory 97%
- Genetic mapping of APP and amyloid-β biology modulation by trisomy 21 96%
- Amelioration of symptomatic Alzheimer's Disease after selective impairment of p75NTR function in adult forebrainexcitatory neurons 95%
Similar papers in this journal
- Epilepsy and neurobehavioral abnormalities in mice with a KCNB1 pathogenic variant that alters conducting and non-conducting functions of KV2.1 96%
- Defects in AMPAR trafficking and microglia activation underlie socio-cognitive deficits associated to decreased expression of Phosphodiesterase 2A 95%
- Loss of excitatory inputs and decreased tonic and evoked activity of locus coeruleus neurons in aged P301S mice 95%
Similar papers in this journal
- Oxytocin administration in neonates shapes the hippocampal circuitry and restores social behavior in a mouse model of autism. 96%
- Ucp2-dependent microglia-neuronal coupling controls ventral hippocampal circuit function and anxiety-like behavior 95%
- Dysregulation of Neuropilin-2 Expression in Inhibitory Neurons Impairs Hippocampal Circuit Development Leading to Autism-Epilepsy Phenotype 95%
Similar papers in this journal
- Cell autonomous role of leucine-rich repeat kinase in protection of dopaminergic neuron survival 96%
- APP β-CTF triggers cell-autonomous synaptic toxicity independent of Aβ 95%
- Heterozygosity for neurodevelopmental disorder-associated TRIO variants yields distinct deficits in behavior, neuronal development, and synaptic transmission in mice. 95%
Similar papers in this journal
- Aβ/APP-induced hyperexcitability and dysregulation of homeostatic synaptic plasticity in models of Alzheimer's disease 96%
- Dual-specificity protein phosphatase 6 (DUSP6) overexpression reduces amyloid load and improves memory deficits in male 5xFAD mice 96%
- Plcg2M28L interacts with high fat-high sugar diet to accelerate Alzheimers disease-relevant phenotypes in mice 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.