The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.

BtuCD is a member of the ATP-binding cassette transporters in Escherichia coli that imports vitamin B(12) into the cell by utilizing the energy of ATP hydrolysis. Crystal structures of BtuCD and its homologous protein HI1470/1 in various conformational states support the "alternating access&quo...

Full description

Bibliographic Details
Main Authors: Jingwei Weng, Kangnian Fan, Wenning Wang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3260306?pdf=render
id doaj-bcd40f2793b8454cb69b552c6de123c2
record_format Article
spelling doaj-bcd40f2793b8454cb69b552c6de123c22020-11-25T01:21:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0171e3046510.1371/journal.pone.0030465The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.Jingwei WengKangnian FanWenning WangBtuCD is a member of the ATP-binding cassette transporters in Escherichia coli that imports vitamin B(12) into the cell by utilizing the energy of ATP hydrolysis. Crystal structures of BtuCD and its homologous protein HI1470/1 in various conformational states support the "alternating access" mechanism which proposes the conformational transitions of the substrate translocation pathway at transmembrane domain (TMD) between the outward-facing and inward-facing states. The conformational transition at TMD is assumed to couple with the movement of the cytoplasmic nucleotide-binding domains (NBDs) driven by ATP hydrolysis/binding. In this study, we performed targeted molecular dynamics (MD) simulations to explore the atomic details of the conformational transitions of BtuCD importer. The outward-facing to inward-facing (O→I) transition was found to be initiated by the conformational movement of NBDs. The subsequent reorientation of the substrate translocation pathway at TMD began with the closing of the periplasmic gate, followed by the opening of the cytoplamic gate in the last stage of the conformational transition due to the extensive hydrophobic interactions at this region, consistent with the functional requirement of unidirectional transport of the substrates. The reverse inward-facing to outward-facing (I→O) transition was found to exhibit intrinsic diversity of the conformational transition pathways and significant structural asymmetry, suggesting that the asymmetric crystal structure of BtuCD-F is an intermediate state in this process.http://europepmc.org/articles/PMC3260306?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jingwei Weng
Kangnian Fan
Wenning Wang
spellingShingle Jingwei Weng
Kangnian Fan
Wenning Wang
The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.
PLoS ONE
author_facet Jingwei Weng
Kangnian Fan
Wenning Wang
author_sort Jingwei Weng
title The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.
title_short The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.
title_full The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.
title_fullStr The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.
title_full_unstemmed The conformational transition pathways of ATP-binding cassette transporter BtuCD revealed by targeted molecular dynamics simulation.
title_sort conformational transition pathways of atp-binding cassette transporter btucd revealed by targeted molecular dynamics simulation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description BtuCD is a member of the ATP-binding cassette transporters in Escherichia coli that imports vitamin B(12) into the cell by utilizing the energy of ATP hydrolysis. Crystal structures of BtuCD and its homologous protein HI1470/1 in various conformational states support the "alternating access" mechanism which proposes the conformational transitions of the substrate translocation pathway at transmembrane domain (TMD) between the outward-facing and inward-facing states. The conformational transition at TMD is assumed to couple with the movement of the cytoplasmic nucleotide-binding domains (NBDs) driven by ATP hydrolysis/binding. In this study, we performed targeted molecular dynamics (MD) simulations to explore the atomic details of the conformational transitions of BtuCD importer. The outward-facing to inward-facing (O→I) transition was found to be initiated by the conformational movement of NBDs. The subsequent reorientation of the substrate translocation pathway at TMD began with the closing of the periplasmic gate, followed by the opening of the cytoplamic gate in the last stage of the conformational transition due to the extensive hydrophobic interactions at this region, consistent with the functional requirement of unidirectional transport of the substrates. The reverse inward-facing to outward-facing (I→O) transition was found to exhibit intrinsic diversity of the conformational transition pathways and significant structural asymmetry, suggesting that the asymmetric crystal structure of BtuCD-F is an intermediate state in this process.
url http://europepmc.org/articles/PMC3260306?pdf=render
work_keys_str_mv AT jingweiweng theconformationaltransitionpathwaysofatpbindingcassettetransporterbtucdrevealedbytargetedmoleculardynamicssimulation
AT kangnianfan theconformationaltransitionpathwaysofatpbindingcassettetransporterbtucdrevealedbytargetedmoleculardynamicssimulation
AT wenningwang theconformationaltransitionpathwaysofatpbindingcassettetransporterbtucdrevealedbytargetedmoleculardynamicssimulation
AT jingweiweng conformationaltransitionpathwaysofatpbindingcassettetransporterbtucdrevealedbytargetedmoleculardynamicssimulation
AT kangnianfan conformationaltransitionpathwaysofatpbindingcassettetransporterbtucdrevealedbytargetedmoleculardynamicssimulation
AT wenningwang conformationaltransitionpathwaysofatpbindingcassettetransporterbtucdrevealedbytargetedmoleculardynamicssimulation
_version_ 1725129792615874560