期刊论文详细信息
eLife
Structural intermediates observed only in intact Escherichia coli indicate a mechanism for TonB-dependent transport
David A Nyenhuis1  David S Cafiso1  Thushani D Nilaweera1 
[1] Department of Chemistry and Center for Membrane Biology, University of Virginia, Charlottesville, United States;
关键词: site-directed spin labeling;    in-situ EPR spectroscopy;    TonB-dependent transport;    double electron-electron resonance;    E. coli;   
DOI  :  10.7554/eLife.68548
来源: eLife Sciences Publications, Ltd
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【 摘 要 】

Outer membrane TonB-dependent transporters facilitate the uptake of trace nutrients and carbohydrates in Gram-negative bacteria and are essential for pathogenic bacteria and the health of the microbiome. Despite this, their mechanism of transport is still unknown. Here, pulse electron paramagnetic resonance (EPR) measurements were made in intact cells on the Escherichia coli vitamin B12 transporter, BtuB. Substrate binding was found to alter the C-terminal region of the core and shift an extracellular substrate binding loop 2 nm toward the periplasm; moreover, this structural transition is regulated by an ionic lock that is broken upon binding of the inner membrane protein TonB. Significantly, this structural transition is not observed when BtuB is reconstituted into phospholipid bilayers. These measurements suggest an alternative to existing models of transport, and they demonstrate the importance of studying outer membrane proteins in their native environment.

【 授权许可】

CC BY   

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