4.7 Article

The Multidrug Transporter MdfA Deviates from the Canonical Model of Alternating Access of MFS Transporters

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 432, 期 20, 页码 5665-5680

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2020.08.017

关键词

MdfA; multidrug transport; conformational cycle; DEER; nanodiscs

资金

  1. United States-Israel Binational Science Foundation (BSF) [2017081]
  2. National lnstitutes of Health [R01GM077659]
  3. United States-Israel Binational Science Foundation
  4. Ruth and Jerome A. Siegel and Freda and Edward M. Siegel professorial Chair

向作者/读者索取更多资源

The prototypic multidrug (Mdr) transporter MdfA from Escherichia coli efflux chemically- dissimilar substrates in exchange for protons. Similar to other transporters, MdfA purportedly functions by alternating access of a central substrate binding pocket to either side of the membrane. Accordingly. MdfA should open at the cytoplasmic side and/or laterally toward the membrane to enable access of drugs into its pocket. At the end of the cycle, the periplasnnic side is expected to open to release drugs. Two distinct conformations of MdfA have been captured by X-ray crystallography: An outward open (O-o) conformation, stabilized by a Fab fragment, and a ligand-bound inward-facing (I-f) conformation, possibly stabilized by a mutation (Q131R). Here, we investigated how these structures relate to ligand-dependent conformational dynamics of MdfA in lipid bilayers. For this purpose, we combined distances measured by double electron-electron resonance (DEER) between pairs of spin labels in MdfA, reconstituted in nanodiscs, with cysteine cross-linking of natively expressed membrane-embedded MdfA variants. Our results suggest that in a membrane environment, MdfA assumes a relatively flexible, outward-closed/inward-closed (O-c/I-c) conformation. Unexpectedly, our data show that neither the substrate TPP nor protonation induces large-scale conformational changes. Rather, we identified a substrate-responsive lateral gate, which is open toward the inner leaflet of the membrane but closes upon drug binding. Together, our results suggest a modified model for the functional conformational cycle of MdfA that does not invoke canonical elements of alternating access. (C) 2020 Elsevier Ltd. All rights reserved.

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