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Method for Identifying Small Molecule Inhibitors of the Protein-protein Interaction Between HCN1 and TRIP8b
Published on: November 11, 2016
Novel potent blockers for TWIK-1/TREK-1 heterodimers as potential antidepressants
Elliot H Lee1, Jung-Eun Park2, Lizaveta Gotina3
1Brain Science Institute, Korea Institute of Science and Technology, Seoul 02792, Republic of Korea; Department of Anesthesiology and Pain Medicine, SMG-SNU Boramae Medical Center, College of Medicine, Seoul National University, Seoul, Republic of Korea.
Abstract:
TREK-1 (TWIK-related potassium channel-1) is a subunit of the two-pore domain potassium (K2p) channel and is widely expressed in the brain. TREK-1 knockout mice were shown to have antidepressant-like effects, providing evidence for the channel's potential as a therapeutic target. However, currently there is no good pharmacological inhibitor specifically targeting TREK-1 containing K2p channels that also displays similar antidepressant-like effects. Here, we sought to find selective and potent inhibitors for TREK-1 related dimers both in vitro and in vivo. We synthesized and evaluated 2-hydroxy-3-phenoxypropyl piperidine derivatives yielding a library from which many TREK-1 targeting candidates emerged. Among these, hydroxyl-phenyl- (2a), piperidino- (2g), and pyrrolidino- (2h) piperidinyl substituted compounds showed high potencies to TREK-1 homodimers with significant antidepressant-like effects in forced swim test and tail suspension test. Interestingly, these compounds were found to have high potencies to TWIK-1/TREK-1 heterodimers. Contrastingly, difluoropiperidinyl-4-fluorophenoxy (3e) and 4-hydroxyphenyl-piperidinyl-4-fluorophenoxy (3j) compounds had high potencies to TREK-1 homodimer but lower potency to TWIK-1/TREK-1 heterodimers without significant antidepressant-like effects. We observed positive correlation between inhibition potency to TWIK-1/TREK-1 and immobility time, and no correlation between inhibition potency to TREK-1 homodimer and immobility time. This was consistent with molecular docking simulations of selected compounds to TREK-1 homodimeric and TWIK-1/TREK-1 heterodimeric models. Existing antidepressant fluoxetine was also found to potently inhibit TWIK-1/TREK-1 heterodimers. Our study reveals novel potent TWIK-1/TREK-1 inhibitors 2a, 2g, and 2h as potential antidepressants and suggest that the TWIK-1/TREK-1 heterodimer could be a potential novel molecular therapeutic target for antidepressants.
Insights
Researchers identified novel compounds that inhibit TWIK-1/TREK-1 heterodimers, showing antidepressant-like effects in mice. This suggests the TWIK-1/TREK-1 heterodimer is a promising new target for antidepressant drug development.
Area of Science:
- Neuroscience
- Pharmacology
- Molecular Biology
Background:
- TREK-1 (TWIK-related potassium channel-1) is a brain-expressed K2p channel subunit.
- TREK-1 knockout mice exhibit antidepressant-like effects, indicating its therapeutic potential.
- A lack of specific pharmacological inhibitors targeting TREK-1 channels with antidepressant effects exists.
Purpose of the Study:
- To discover selective and potent inhibitors for TREK-1 related dimers.
- To evaluate these inhibitors in vitro and in vivo for antidepressant-like activity.
- To identify novel molecular targets for antidepressant therapies.
Main Methods:
- Synthesis and evaluation of 2-hydroxy-3-phenoxypropyl piperidine derivatives.
- In vitro and in vivo testing, including forced swim and tail suspension tests.
- Molecular docking simulations to analyze compound interactions with TREK-1 homodimers and TWIK-1/TREK-1 heterodimers.
Main Results:
- Compounds 2a, 2g, and 2h potently inhibited TREK-1 homodimers and TWIK-1/TREK-1 heterodimers, showing antidepressant-like effects.
- Inhibition of TWIK-1/TREK-1 heterodimers correlated positively with antidepressant effects.
- Existing antidepressant fluoxetine also inhibited TWIK-1/TREK-1 heterodimers.
Conclusions:
- Novel potent TWIK-1/TREK-1 inhibitors (2a, 2g, 2h) were identified as potential antidepressants.
- The TWIK-1/TREK-1 heterodimer represents a potential novel molecular therapeutic target for antidepressants.
- Selective inhibition of TWIK-1/TREK-1 heterodimers may be key for antidepressant efficacy.
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