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Published on: May 3, 2017
Enhanced tau phosphorylation in the hippocampus of mice treated with 3,4-methylenedioxymethamphetamine ("Ecstasy")
Carla L Busceti1, Francesca Biagioni, Barbara Riozzi
1Istituto Neurologico Mediterraneo Neuromed, 86077 Pozzilli, Italy.
Abstract:
3,4-Methylenedioxymethamphetamine (MDMA) ("Ecstasy") produces neurotoxic effects, which result into an impairment of learning and memory and other neurological dysfunctions. We examined whether MDMA induces increases in tau protein phosphorylation, which are typically associated with Alzheimer's disease and other chronic neurodegenerative disorders. We injected mice with MDMA at cumulative doses of 10-50 mg/kg intraperitoneally, which are approximately equivalent to doses generally consumed by humans. MDMA enhanced the formation of reactive oxygen species and induced reactive gliosis in the hippocampus, without histological evidence of neuronal loss. An acute or 6 d treatment with MDMA increased tau protein phosphorylation in the hippocampus, revealed by both anti-phospho(Ser(404))-tau and paired helical filament-1 antibodies. This increase was restricted to the CA2/CA3 subfields and lasted 1 and 7 d after acute and repeated MDMA treatment, respectively. Tau protein was phosphorylated as a result of two nonredundant mechanisms: (1) inhibition of the canonical Wnt (wingless-type MMTV integration site family) pathway, with ensuing activation of glycogen synthase kinase-3beta; and (2) activation of type-5 cyclin-dependent kinase (Cdk5). MDMA induced the expression of the Wnt antagonist, Dickkopf-1, and the expression of the Cdk5-activating protein, p25. In addition, the increase in tau phosphorylation was attenuated by strategies that rescued the Wnt pathway or inhibited Cdk5. Finally, an impairment in hippocampus-dependent spatial learning was induced by doses of MDMA that increased tau phosphorylation, although the impairment outlasted this biochemical event. We conclude that tau hyperphosphorylation in the hippocampus may contribute to the impairment of learning and memory associated with MDMA abuse.
Insights
3,4-Methylenedioxymethamphetamine (MDMA) causes neurotoxicity, impairing learning and memory. This study shows MDMA increases tau protein phosphorylation in the hippocampus, a hallmark of neurodegenerative diseases, through Wnt pathway inhibition and Cdk5 activation.
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- 3,4-Methylenedioxymethamphetamine (MDMA) is known to cause neurotoxic effects, leading to cognitive impairments.
- Tau protein hyperphosphorylation is a key feature of Alzheimer's disease and other neurodegenerative disorders.
Purpose of the Study:
- To investigate whether MDMA induces tau protein phosphorylation in the hippocampus.
- To explore the molecular mechanisms underlying MDMA-induced tau phosphorylation.
- To determine the relationship between MDMA-induced tau phosphorylation and learning/memory deficits.
Main Methods:
- Mice were administered varying cumulative doses of MDMA.
- Assessed reactive oxygen species formation, reactive gliosis, and neuronal loss in the hippocampus.
- Measured tau protein phosphorylation using specific antibodies.
- Investigated the Wnt/GSK-3beta and Cdk5 pathways.
- Evaluated hippocampus-dependent spatial learning.
Main Results:
- MDMA exposure led to increased reactive oxygen species and reactive gliosis in the hippocampus, without neuronal loss.
- Tau protein phosphorylation was elevated in the CA2/CA3 subfields following acute or repeated MDMA treatment.
- Phosphorylation occurred via Wnt pathway inhibition (increasing GSK-3beta activity) and Cdk5 activation (via p25 induction).
- Strategies targeting the Wnt pathway or inhibiting Cdk5 attenuated tau phosphorylation.
- MDMA impaired spatial learning, an effect that persisted longer than the observed tau phosphorylation.
Conclusions:
- MDMA induces tau hyperphosphorylation in the hippocampus through distinct molecular pathways.
- This tau phosphorylation may contribute to the learning and memory impairments associated with MDMA use.
- The findings link MDMA neurotoxicity to mechanisms relevant to chronic neurodegenerative diseases.
