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Structural insights into the inhibition of glycine reuptake

Authors :
Wolfgang Guba
Markus A. Seeger
Azadeh Shahsavar
Iwan Zimmermann
Thomas R. Schneider
Steffen Sinning
Gleb Bourenkov
Emmanuel Pinard
Poul Nissen
Peter Stohler
Martin Siegrist
Roger J. P. Dawson
University of Zurich
Schneider, Thomas R
Dawson, Roger J P
Nissen, Poul
Source :
Shahsavar, A, Stohler, P, Bourenkov, G, Zimmermann, I, Siegrist, M, Guba, W, Pinard, E, Sinning, S, Seeger, M A, Schneider, T R, Dawson, R J P & Nissen, P 2021, ' Structural insights into the inhibition of glycine reuptake ', Nature, vol. 591, pp. 677-681 . https://doi.org/10.1038/s41586-021-03274-z
Publication Year :
2020

Abstract

The human glycine transporter 1 (GlyT1) regulates glycine-mediated neuronal excitation and inhibition through the sodium- and chloride-dependent reuptake of glycine1–3. Inhibition of GlyT1 prolongs neurotransmitter signalling, and has long been a key strategy in the development of therapies for a broad range of disorders of the central nervous system, including schizophrenia and cognitive impairments4. Here, using a synthetic single-domain antibody (sybody) and serial synchrotron crystallography, we have determined the structure of GlyT1 in complex with a benzoylpiperazine chemotype inhibitor at 3.4 A resolution. We find that the inhibitor locks GlyT1 in an inward-open conformation and binds at the intracellular gate of the release pathway, overlapping with the glycine-release site. The inhibitor is likely to reach GlyT1 from the cytoplasmic leaflet of the plasma membrane. Our results define the mechanism of inhibition and enable the rational design of new, clinically efficacious GlyT1 inhibitors. Serial synchrotron crystallography reveals the structure of the human glycine transporter GlyT1, showing how a state-specific inhibitor exerts its effects, and potentially informing the design of new GlyT1 inhibitors to treat a range of disorders of the central nervous system.

Details

ISSN :
14764687
Volume :
591
Issue :
7851
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....4e5fbb4ec10167844f6037a4d2725e07
Full Text :
https://doi.org/10.1038/s41586-021-03274-z