Design, Synthesis, and Functional Evaluation of 1, 5-Disubstituted Tetrazoles as Monoamine Neurotransmitter Reuptake Inhibitors

Tetrazoles were designed and synthesized as potential inhibitors of triple monoamine neurotransmitters (dopamine, norepinephrine, serotonin) reuptake based on the functional and docking simulation of compound 6 which were performed in a previous study. The compound structure consisted of a tetrazole...

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Veröffentlicht in:Biomolecules & therapeutics 2022-03, Vol.30 (2), p.191-202
Hauptverfasser: Paudel, Suresh, Wang, Shuji, Kim, Eunae, Kundu, Dooti, Min, Xiao, Shin, Chan Young, Kim, Kyeong-Man
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container_end_page 202
container_issue 2
container_start_page 191
container_title Biomolecules & therapeutics
container_volume 30
creator Paudel, Suresh
Wang, Shuji
Kim, Eunae
Kundu, Dooti
Min, Xiao
Shin, Chan Young
Kim, Kyeong-Man
description Tetrazoles were designed and synthesized as potential inhibitors of triple monoamine neurotransmitters (dopamine, norepinephrine, serotonin) reuptake based on the functional and docking simulation of compound 6 which were performed in a previous study. The compound structure consisted of a tetrazole-linker (n)-piperidine/piperazine-spacer (m)-phenyl ring, with tetrazole attached to two phenyl rings (R1 and R2). Altering the carbon number in the linker (n) from 3 to 4 and in the spacer (m) from 0 to 1 increased the potency of serotonin reuptake inhibition. Depending on the nature of piperidine/piperazine, the substituents at R1 and R2 exerted various effects in determining their inhibitory effects on monoamine reuptake. Docking study showed that the selectivity of tetrazole for different transporters was determined based on multiple interactions with various residues on transporters, including hydrophobic residues on transmembrane domains 1, 3, 6, and 8. Co-expression of dopamine transporter, which lowers dopamine concentration in the biophase by uptaking dopamine into the cells, inhibited the dopamine-induced endoctytosis of dopamine D2 receptor. When tested for compound 40 and 56, compound 40 which has more potent inhibitory activity on dopamine reuptake more strongly disinhibited the inhibitory activity of dopamine transporter on the endocytosis of dopamine D2 receptor. Overall, we identified candidate inhibitors of triple monoamine neurotransmitter reuptake and provided a theoretical background for identifying such neurotransmitter modifiers for developing novel therapeutic agents of various neuropsychiatric disorders.
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2005-4483
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source KoreaMed Open Access; EZB-FREE-00999 freely available EZB journals; PubMed Central; PubMed Central Open Access
subjects Docking simulation
Receptor endocytosis
Structure-activity relationship
Tetrazoles
Transporter
Triple reuptake
title Design, Synthesis, and Functional Evaluation of 1, 5-Disubstituted Tetrazoles as Monoamine Neurotransmitter Reuptake Inhibitors
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