| Literature DB >> 24862870 |
Aleksandr Sverzhinsky1, Shuo Qian, Lin Yang, Marc Allaire, Isabel Moraes, Dewang Ma, Jacqueline W Chung, Manuela Zoonens, Jean-Luc Popot, James W Coulton.
Abstract
Nutrient import across Gram-negative bacteria's outer membrane is powered by the proton-motive force, delivered by the cytoplasmic membrane protein complex ExbB-ExbD-TonB. Having purified the ExbB4-ExbD2 complex in the detergent dodecyl maltoside, we substituted amphipol A8-35 for detergent, forming a water-soluble membrane protein/amphipol complex. Properties of the ExbB4-ExbD2 complex in detergent or in amphipols were compared by gel electrophoresis, size exclusion chromatography, asymmetric flow field-flow fractionation, thermal stability assays, and electron microscopy. Bound detergent and fluorescently labeled amphipol were assayed quantitatively by 1D NMR and analytical ultracentrifugation, respectively. The structural arrangement of ExbB4-ExbD2 was examined by EM, small-angle X-ray scattering, and small-angle neutron scattering using a deuterated amphipol. The amphipol-trapped ExbB4-ExbD2 complex is slightly larger than its detergent-solubilized counterpart. We also investigated a different oligomeric form of the two proteins, ExbB6-ExbD4, and propose a structural arrangement of its transmembrane α-helical domains.Entities:
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Year: 2014 PMID: 24862870 DOI: 10.1007/s00232-014-9678-4
Source DB: PubMed Journal: J Membr Biol ISSN: 0022-2631 Impact factor: 1.843