Conformational dynamics of the nucleotide binding domains and the power stroke of a heterodimeric ABC transporter

Author:

Mishra Smriti1,Verhalen Brandy1,Stein Richard A1,Wen Po-Chao234,Tajkhorshid Emad234,Mchaourab Hassane S1

Affiliation:

1. Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, United States

2. Department of Biochemistry, College of Medicine, University of Illinois, Urbana, United States

3. Center for Biophysics and Computational Biology, University of Illinois, Urbana, United States

4. The Beckman Institute for Advanced Science and Technology, University of Illinois, Urbana, Unites States

Abstract

Multidrug ATP binding cassette (ABC) exporters are ubiquitous ABC transporters that extrude cytotoxic molecules across cell membranes. Despite recent progress in structure determination of these transporters, the conformational motion that transduces the energy of ATP hydrolysis to the work of substrate translocation remains undefined. Here, we have investigated the conformational cycle of BmrCD, a representative of the heterodimer family of ABC exporters that have an intrinsically impaired nucleotide binding site. We measured distances between pairs of spin labels monitoring the movement of the nucleotide binding (NBD) and transmembrane domains (TMD). The results expose previously unobserved structural intermediates of the NBDs arising from asymmetric configuration of catalytically inequivalent nucleotide binding sites. The two-state transition of the TMD, from an inward- to an outward-facing conformation, is driven exclusively by ATP hydrolysis. These findings provide direct evidence of divergence in the mechanism of ABC exporters.

Funder

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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