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Published on: August 15, 2017
Lithium increases synaptic GluA2 in hippocampal neurons by elevating the δ-catenin protein
Mobeen Farooq1, Seonil Kim1, Sunny Patel1
1Department of Biochemistry and Molecular Pharmacology, New York University, Langone Medical Center, NY 10016, United States.
Lithium treatment increases synaptic proteins, including delta-catenin, GRIP, and GluA2, in hippocampal neurons. This stabilization of AMPA receptors (AMPARs) suggests a mechanism for lithium
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Lithium (Li+) is a key treatment for bipolar disorder, but its precise mechanism of action remains unclear.
- Synaptic dysfunction is implicated in neurological disorders, highlighting the importance of understanding synaptic protein regulation.
Purpose of the Study:
- To investigate the effects of Li+ on the synaptic complex involving delta-catenin, GRIP, and AMPA receptors (AMPARs) in hippocampal neurons.
- To elucidate the molecular mechanism by which Li+ influences synaptic function and potentially impacts neurological disease treatment.
Main Methods:
- Utilized cultured hippocampal neurons and animal models to study the impact of Li+ on synaptic protein levels.
- Employed biochemical assays and electrophysiology to assess protein interactions, receptor surface expression, and synaptic activity (mEPSCs).
Main Results:
- Li+ elevated delta-catenin levels, which in turn increased GRIP and GluA2 (an AMPAR subunit) levels at synapses.
- The enhanced surface expression of GluA2 was dependent on its interaction with GRIP.
- Li+ increased the amplitude, but not frequency, of miniature excitatory postsynaptic currents (mEPSCs), indicating functional AMPAR stabilization.
Conclusions:
- Li+ stabilizes delta-catenin, leading to the elevation of a synaptic complex comprising delta-catenin, GRIP, and AMPARs in hippocampal neurons.
- This mechanism provides insight into how Li+ modulates brain synaptic function, potentially explaining its therapeutic effects in neurological conditions.
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