Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.

BACKGROUND:The ABC transporter OpuA from Lactococcus lactis transports glycine betaine upon activation by threshold values of ionic strength. In this study, the ligand binding characteristics of purified OpuA in a detergent-solubilized state and of its substrate-binding domain produced as soluble pr...

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Main Authors: Justina C Wolters, Ronnie P-A Berntsson, Nadia Gul, Akira Karasawa, Andy-Mark W H Thunnissen, Dirk-Jan Slotboom, Bert Poolman
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-04-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2861598?pdf=render
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spelling doaj-4fd44d10d1cf412f8da27ab0aaa8c3b52020-11-25T02:01:10ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-04-0154e1036110.1371/journal.pone.0010361Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.Justina C WoltersRonnie P-A BerntssonNadia GulAkira KarasawaAndy-Mark W H ThunnissenDirk-Jan SlotboomBert PoolmanBACKGROUND:The ABC transporter OpuA from Lactococcus lactis transports glycine betaine upon activation by threshold values of ionic strength. In this study, the ligand binding characteristics of purified OpuA in a detergent-solubilized state and of its substrate-binding domain produced as soluble protein (OpuAC) was characterized. PRINCIPAL FINDINGS:The binding of glycine betaine to purified OpuA and OpuAC (K(D) = 4-6 microM) did not show any salt dependence or cooperative effects, in contrast to the transport activity. OpuAC is highly specific for glycine betaine and the related proline betaine. Other compatible solutes like proline and carnitine bound with affinities that were 3 to 4 orders of magnitude lower. The low affinity substrates were not noticeably transported by membrane-reconstituted OpuA. OpuAC was crystallized in an open (1.9 A) and closed-liganded (2.3 A) conformation. The binding pocket is formed by three tryptophans (Trp-prism) coordinating the quaternary ammonium group of glycine betaine in the closed-liganded structure. Even though the binding site of OpuAC is identical to that of its B. subtilis homolog, the affinity for glycine betaine is 4-fold higher. CONCLUSIONS:Ionic strength did not affect substrate binding to OpuA, indicating that regulation of transport is not at the level of substrate binding, but rather at the level of translocation. The overlap between the crystal structures of OpuAC from L.lactis and B.subtilis, comprising the classical Trp-prism, show that the differences observed in the binding affinities originate from outside of the ligand binding site.http://europepmc.org/articles/PMC2861598?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Justina C Wolters
Ronnie P-A Berntsson
Nadia Gul
Akira Karasawa
Andy-Mark W H Thunnissen
Dirk-Jan Slotboom
Bert Poolman
spellingShingle Justina C Wolters
Ronnie P-A Berntsson
Nadia Gul
Akira Karasawa
Andy-Mark W H Thunnissen
Dirk-Jan Slotboom
Bert Poolman
Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.
PLoS ONE
author_facet Justina C Wolters
Ronnie P-A Berntsson
Nadia Gul
Akira Karasawa
Andy-Mark W H Thunnissen
Dirk-Jan Slotboom
Bert Poolman
author_sort Justina C Wolters
title Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.
title_short Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.
title_full Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.
title_fullStr Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.
title_full_unstemmed Ligand binding and crystal structures of the substrate-binding domain of the ABC transporter OpuA.
title_sort ligand binding and crystal structures of the substrate-binding domain of the abc transporter opua.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-04-01
description BACKGROUND:The ABC transporter OpuA from Lactococcus lactis transports glycine betaine upon activation by threshold values of ionic strength. In this study, the ligand binding characteristics of purified OpuA in a detergent-solubilized state and of its substrate-binding domain produced as soluble protein (OpuAC) was characterized. PRINCIPAL FINDINGS:The binding of glycine betaine to purified OpuA and OpuAC (K(D) = 4-6 microM) did not show any salt dependence or cooperative effects, in contrast to the transport activity. OpuAC is highly specific for glycine betaine and the related proline betaine. Other compatible solutes like proline and carnitine bound with affinities that were 3 to 4 orders of magnitude lower. The low affinity substrates were not noticeably transported by membrane-reconstituted OpuA. OpuAC was crystallized in an open (1.9 A) and closed-liganded (2.3 A) conformation. The binding pocket is formed by three tryptophans (Trp-prism) coordinating the quaternary ammonium group of glycine betaine in the closed-liganded structure. Even though the binding site of OpuAC is identical to that of its B. subtilis homolog, the affinity for glycine betaine is 4-fold higher. CONCLUSIONS:Ionic strength did not affect substrate binding to OpuA, indicating that regulation of transport is not at the level of substrate binding, but rather at the level of translocation. The overlap between the crystal structures of OpuAC from L.lactis and B.subtilis, comprising the classical Trp-prism, show that the differences observed in the binding affinities originate from outside of the ligand binding site.
url http://europepmc.org/articles/PMC2861598?pdf=render
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