Dynamic extracellular vestibule of human SERT: Unveiling druggable potential with high-affinity allosteric inhibitors

Author:

Salomon Kristine1ORCID,Abramyan Ara M.23ORCID,Plenge Per1,Wang Lingle4,Bundgaard Christoffer5ORCID,Bang-Andersen Benny5ORCID,Loland Claus J.1ORCID,Shi Lei2ORCID

Affiliation:

1. Laboratory for Membrane Protein Dynamics, Department of Neuroscience, Faculty of Health and Medical Sciences, University of Copenhagen, DK-2200 Copenhagen N, Denmark

2. Computational Chemistry and Molecular Biophysics Section, Molecular Targets and Medications Discovery Branch, National Institute on Drug Abuse - Intramural Research Program, NIH, Baltimore, MD 21224

3. Schrödinger, Inc., San Diego, CA 92121

4. Schrödinger, Inc., New York, NY 10036

5. Medicinal Chemistry and Translational DMPK, H. Lundbeck A/S, DK-2500 Copenhagen-Valby, Denmark

Abstract

The serotonin transporter (SERT) tightly regulates synaptic serotonin levels and has been the primary target of antidepressants. Binding of inhibitors to the allosteric site of human SERT (hSERT) impedes the dissociation of antidepressants bound at the central site and may enhance the efficacy of such antidepressants to potentially reduce their dosage and side effects. Here, we report the identification of a series of high-affinity allosteric inhibitors of hSERT in a unique scaffold, with the lead compound, Lu AF88273 (3-(1-(2-(1 H -indol-3-yl)ethyl)piperidin-4-yl)-6-chloro-1 H -indole), having 2.1 nM allosteric potency in inhibiting imipramine dissociation. In addition, we find that Lu AF88273 also inhibits serotonin transport in a noncompetitive manner. The binding pose of Lu AF88273 in the allosteric site of hSERT is determined with extensive molecular dynamics simulations and rigorous absolute binding free energy perturbation (FEP) calculations, which show that a part of the compound occupies a dynamically formed small cavity. The predicted binding location and pose are validated by site-directed mutagenesis and can explain much of the structure–activity relationship of these inhibitors using the relative binding FEP calculations. Together, our findings provide a promising lead compound and the structural basis for the development of allosteric drugs targeting hSERT. Further, they demonstrate that the divergent allosteric sites of neurotransmitter transporters can be selectively targeted.

Funder

HHS | NIH | National Institute on Drug Abuse

Independent Research Fund Denmark

Lundbeck Foundation

Novo Nordisk Fonden

Carlsbergfondet

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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