4.7 Article

Distinct Conformational Spectrum of Homologous Multidrug ABC Transporters

Journal

STRUCTURE
Volume 23, Issue 3, Pages 450-460

Publisher

CELL PRESS
DOI: 10.1016/j.str.2014.12.013

Keywords

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Funding

  1. National Institute of Health [P50 GM073197, R01 GM098538, P41 GM103310, RGM102928, U54 GM94610, R01 GM94367]

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ATP-binding cassette (ABC) exporters are ubiquitously found in all kingdoms of life and their members play significant roles in mediating drug pharmacokinetics and multidrug resistance in the clinic. Significant questions and controversies remain regarding the relevance of their conformations observed in X-ray structures, their structural dynamics, and mechanism of transport. Here, we used single particle electron microscopy (EM) to delineate the entire conformational spectrum of two homologous ABC exporters (bacterial MsbA and mammalian P-glycoprotein) and the influence of nucleotide and substrate binding. Newly developed amphiphiles in complex with lipids that support high protein stability and activity enabled EM visualization of individual complexes in a membrane-mimicking environment. The data provide a comprehensive view of the conformational flexibility of these ABC exporters under various states and demonstrate not only similarities but striking differences between their mechanistic and energetic regulation of conformational changes.

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