Coordination of Na(+) by monoamine ligands in dopamine, norepinephrine, and serotonin transporters.

Abstract:

:The reuptake of neurotransmitters by dopamine, norepinephrine, and serotonin transporters during neuronal transmission requires a sodium gradient. An "ionic mode" of binding proposes that aspartate anchors the ligand's positive charge but ignores the direct role of sodium in ligand binding seen in the only representative structure, the prokaryotic leucine transporter LeuT. Here, we built structural models of human transporters of dopamine, norepinephrine, and serotonin using the LeuT structure. The ligand and sodium-binding sites are highly conserved. We examined the possibilities for ligand binding given the available experimental evidence, including examples of catechol-cation chelates in X-ray structures of protein and other complexes. We conclude that a "chelation mode" of binding with direct interaction between the catechol hydroxyls and sodium is a valid alternative, with consequences for pharmaceutical design. In the modeled serotonin transporter complexes, Y95 is placed where it could select for serotonin through hydrogen bonding to the indole nitrogen.

journal_name

J Chem Inf Model

authors

Xhaard H,Backström V,Denessiouk K,Johnson MS

doi

10.1021/ci700255d

subject

Has Abstract

pub_date

2008-07-01 00:00:00

pages

1423-37

issue

7

eissn

1549-9596

issn

1549-960X

journal_volume

48

pub_type

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