National Institutes of Health/National Institute of General Medical Sciences
R01GM080139
United States
Citation
Journal: Nat Commun / Year: 2019 Title: In situ structure and assembly of the multidrug efflux pump AcrAB-TolC. Authors: Xiaodong Shi / Muyuan Chen / Zhili Yu / James M Bell / Hans Wang / Isaac Forrester / Heather Villarreal / Joanita Jakana / Dijun Du / Ben F Luisi / Steven J Ludtke / Zhao Wang / Abstract: Multidrug efflux pumps actively expel a wide range of toxic substrates from the cell and play a major role in intrinsic and acquired drug resistance. In Gram-negative bacteria, these pumps form ...Multidrug efflux pumps actively expel a wide range of toxic substrates from the cell and play a major role in intrinsic and acquired drug resistance. In Gram-negative bacteria, these pumps form tripartite assemblies that span the cell envelope. However, the in situ structure and assembly mechanism of multidrug efflux pumps remain unknown. Here we report the in situ structure of the Escherichia coli AcrAB-TolC multidrug efflux pump obtained by electron cryo-tomography and subtomogram averaging. The fully assembled efflux pump is observed in a closed state under conditions of antibiotic challenge and in an open state in the presence of AcrB inhibitor. We also observe intermediate AcrAB complexes without TolC and discover that AcrA contacts the peptidoglycan layer of the periplasm. Our data point to a sequential assembly process in living bacteria, beginning with formation of the AcrAB subcomplex and suggest domains to target with efflux pump inhibitors.
History
Deposition
Feb 7, 2019
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Header (metadata) release
Mar 27, 2019
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Map release
Jun 26, 2019
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Update
Jun 26, 2019
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Current status
Jun 26, 2019
Processing site: RCSB / Status: Released
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