4C48

Crystal structure of AcrB-AcrZ complex


Experimental Data Snapshot

  • Method: X-RAY DIFFRACTION
  • Resolution: 3.30 Å
  • R-Value Free: 0.322 
  • R-Value Work: 0.281 
  • R-Value Observed: 0.283 

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This is version 1.3 of the entry. See complete history


Literature

Structure of the AcrAB-TolC multidrug efflux pump.

Du, D.Wang, Z.James, N.R.Voss, J.E.Klimont, E.Ohene-Agyei, T.Venter, H.Chiu, W.Luisi, B.F.

(2014) Nature 509: 512-515

  • DOI: 10.1038/nature13205
  • Primary Citation of Related Structures:  
    4C48, 4CDI

  • PubMed Abstract: 
  • The capacity of numerous bacterial species to tolerate antibiotics and other toxic compounds arises in part from the activity of energy-dependent transporters. In Gram-negative bacteria, many of these transporters form multicomponent 'pumps' that span both inner and outer membranes and are driven energetically by a primary or secondary transporter component ...

    The capacity of numerous bacterial species to tolerate antibiotics and other toxic compounds arises in part from the activity of energy-dependent transporters. In Gram-negative bacteria, many of these transporters form multicomponent 'pumps' that span both inner and outer membranes and are driven energetically by a primary or secondary transporter component. A model system for such a pump is the acridine resistance complex of Escherichia coli. This pump assembly comprises the outer-membrane channel TolC, the secondary transporter AcrB located in the inner membrane, and the periplasmic AcrA, which bridges these two integral membrane proteins. The AcrAB-TolC efflux pump is able to transport vectorially a diverse array of compounds with little chemical similarity, thus conferring resistance to a broad spectrum of antibiotics. Homologous complexes are found in many Gram-negative species, including in animal and plant pathogens. Crystal structures are available for the individual components of the pump and have provided insights into substrate recognition, energy coupling and the transduction of conformational changes associated with the transport process. However, how the subunits are organized in the pump, their stoichiometry and the details of their interactions are not known. Here we present the pseudo-atomic structure of a complete multidrug efflux pump in complex with a modulatory protein partner from E. coli. The model defines the quaternary organization of the pump, identifies key domain interactions, and suggests a cooperative process for channel assembly and opening. These findings illuminate the basis for drug resistance in numerous pathogenic bacterial species.


    Organizational Affiliation

    Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1GA, UK.



Macromolecules
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Entity ID: 1
MoleculeChainsSequence LengthOrganismDetailsImage
ACRIFLAVINE RESISTANCE PROTEIN BA1,047Escherichia coli K-12Mutation(s): 0 
Gene Names: acrBacrEb0462JW0451
Membrane Entity: Yes 
UniProt
Find proteins for P31224 (Escherichia coli (strain K12))
Explore P31224 
Go to UniProtKB:  P31224
Entity Groups  
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UniProt GroupP31224
Protein Feature View
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  • Reference Sequence
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Entity ID: 2
MoleculeChainsSequence LengthOrganismDetailsImage
DARPINB169synthetic constructMutation(s): 0 
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Entity ID: 3
MoleculeChainsSequence LengthOrganismDetailsImage
UNCHARACTERIZED MEMBRANE PROTEIN YBHTC49Escherichia coli str. K-12 substr. W3110Mutation(s): 0 
Membrane Entity: Yes 
UniProt
Find proteins for P0AAW9 (Escherichia coli (strain K12))
Explore P0AAW9 
Go to UniProtKB:  P0AAW9
Entity Groups  
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UniProt GroupP0AAW9
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  • Reference Sequence
Experimental Data & Validation

Experimental Data

  • Method: X-RAY DIFFRACTION
  • Resolution: 3.30 Å
  • R-Value Free: 0.322 
  • R-Value Work: 0.281 
  • R-Value Observed: 0.283 
  • Space Group: H 3 2
Unit Cell:
Length ( Å )Angle ( ˚ )
a = 145.01α = 90
b = 145.01β = 90
c = 538.34γ = 120
Software Package:
Software NamePurpose
REFMACrefinement
XDSdata reduction
SCALAdata scaling
PHASERphasing

Structure Validation

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Ligand Structure Quality Assessment 


Entry History 

Deposition Data

Revision History  (Full details and data files)

  • Version 1.0: 2014-04-30
    Type: Initial release
  • Version 1.1: 2014-05-28
    Changes: Database references
  • Version 1.2: 2018-11-14
    Changes: Data collection, Database references
  • Version 1.3: 2018-11-21
    Changes: Data collection, Source and taxonomy