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PMID: 9677366 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

High affinity recognition of serotonin transporter antagonists defined by species-scanning mutagenesis. An aromatic residue in transmembrane domain I dictates species-selective recognition of citalopram and mazindol.

The Journal of biological chemistry ·Vol. 273 ·No. 31 ·1998-07-31 ·Pages 19459-68

Barker EL, Perlman MA, Adkins EM, Houlihan WJ, Pristupa ZB, Niznik HB, Blakely RD

Abstract

Human and Drosophila melanogaster serotonin (5-HT) transporters (SERTs) exhibit similar 5-HT transport kinetics and can be distinguished pharmacologically by many, but not all, biogenic amine transporter antagonists. By using human and Drosophila SERT chimeras, major determinants of potencies of two transporter antagonists, mazindol and citalopram, were tracked to the amino-terminal domains encompassing transmembrane domains I and II. Species-scanning mutagenesis, whereby amino acid substitutions are made switching residues from one species to another, was employed on the eight amino acids that differ between human and Drosophila SERTs in this region, and antagonist potencies were reassessed in 5-HT uptake assays. A single mutation in transmembrane domain I of human SERT, Y95F, shifted both citalopram and mazindol to Drosophila SERT-like potencies. Strikingly, these potency changes were in opposite directions suggesting Tyr95 contributes both positive and negative determinants of antagonist potency. To gain insight into how the Y95F mutant might influence mazindol potency, we determined how structural variants of mazindol responded to the mutation. Our studies demonstrate the importance of the hydroxyl group on the heterocyclic nucleus of mazindol for maintaining species-selective recognition of mazindol and suggest that transmembrane domain I participates in the formation of antagonist-binding sites for amine transporters.

MeSH Terms
Animals Binding Sites/genetics Binding, Competitive Biological Transport/drug effects Carrier Proteins/chemistry,genetics Citalopram/chemistry,pharmacology Drosophila Drosophila Proteins HeLa Cells Humans Mazindol/chemistry,pharmacology Membrane Glycoproteins/chemistry,genetics Membrane Proteins/chemistry Membrane Transport Proteins Models, Molecular Molecular Structure Mutagenesis, Site-Directed/genetics Nerve Tissue Proteins Recombinant Fusion Proteins/genetics Serotonin/pharmacokinetics Serotonin Antagonists/chemistry,pharmacology Serotonin Plasma Membrane Transport Proteins Transfection/genetics
Chemicals
Carrier Proteins Drosophila Proteins Membrane Glycoproteins Membrane Proteins Membrane Transport Proteins Nerve Tissue Proteins Recombinant Fusion Proteins SLC6A4 protein, human SerT protein, Drosophila Serotonin Antagonists Serotonin Plasma Membrane Transport Proteins Citalopram Serotonin Mazindol
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Barker E L
Department of Pharmacology and Center for Molecular Neuroscience, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-6600, USA.
Perlman M A
Adkins E M
Houlihan W J
Pristupa Z B
Niznik H B
Blakely R D
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1998-07-31
Pages
19459-68
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIDA NIH HHS · F32-DA05679 · United States
NIDA NIH HHS · R01-DA7390 · United States
NIDA NIH HHS · R03-DA8516-02 · United States
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