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Structure of the Tripartite Multidrug Efflux Pump AcrAB-TolC Suggests an Alternative Assembly Modeopen access

Authors
Kim, Jin-SikJeong, HyeongseopSong, SaemeeKim, Hye-YeonLee, KangseokHyun, JaekyungHa, Nam-Chul
Issue Date
Feb-2015
Publisher
KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
Keywords
complex structure; electron microscopy; membrane protein; multidrug efflux pump
Citation
MOLECULES AND CELLS, v.38, no.2, pp 180 - 186
Pages
7
Journal Title
MOLECULES AND CELLS
Volume
38
Number
2
Start Page
180
End Page
186
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/9951
DOI
10.14348/molcells.2015.2277
ISSN
1016-8478
0219-1032
Abstract
Escherichia coli AcrAB-TolC is a multidrug efflux pump that expels a wide range of toxic substrates. The dynamic nature of the binding or low affinity between the components has impeded elucidation of how the three components assemble in the functional state. Here, we created fusion proteins composed of AcrB, a transmembrane linker, and two copies of AcrA. The fusion protein exhibited acridine pumping activity, suggesting that the protein reflects the functional structure in vivo. To discern the assembling mode with TolC, the AcrBA fusion protein was incubated with TolC or a chimeric protein containing the TolC aperture tip region. Three-dimensional structures of the complex proteins were determined through transmission electron microscopy. The overall structure exemplifies the adaptor bridging model, wherein the funnel-like AcrA hexamer forms an intermeshing cogwheel interaction with the alpha-barrel tip region of TolC, and a direct interaction between AcrB and TolC is not allowed. These observations provide a structural blueprint for understanding multidrug resistance in pathogenic Gram-negative bacteria.
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Lee, Kangseok
자연과학대학 (생명과학과)
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