Metal-induced conformational changes in ZneB suggest an active role of membrane fusion proteins in efflux resistance systems

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Názov: Metal-induced conformational changes in ZneB suggest an active role of membrane fusion proteins in efflux resistance systems
Autori: De Angelis, Fabien, Lee, J, O'Connell, Joseph D, Miercke, Larry J W, Verschueren, Koen H, Srinivasan, Vasundara, Bauvois, Cédric, Govaerts, Cédric, Robbins, Rebecca A, Ruysschaert, Jean Marie, Stroud, Robert M, Vandenbussche, Guy
Zdroj: Proceedings of the National Academy of Sciences of the United States of America, vol 107, iss 24
Informácie o vydavateľovi: Proceedings of the National Academy of Sciences, 2010.
Rok vydania: 2010
Predmety: Models, Molecular, 0301 basic medicine, Protein Conformation, Cation Transport Proteins -- genetics, Recombinant Proteins -- genetics, Drug Resistance, Cation Transport Proteins -- metabolism, Sequence Homology, Carrier Proteins -- metabolism, Membrane Fusion Proteins -- metabolism, Zinc -- metabolism, Crystallography, X-Ray, Periplasmic adaptor protein, Carrier Proteins -- chemistry, Models, Mutant Proteins -- genetics, 2.2 Factors relating to the physical environment, Site-Directed, Cupriavidus metallidurans CH34, Recombinant Proteins -- metabolism, Cation Transport Proteins, Spectroscopy, Phylogeny, heavy-metal resistance, 0303 health sciences, Crystallography, Bacterial Proteins -- chemistry, Cupriavidus, Bacterial, Membrane Fusion Proteins -- genetics, Heavy, Biological Sciences, Recombinant Proteins, Amino Acid, Zinc, Infectious Diseases, Membrane Fusion Proteins -- chemistry, Metals, resistance nodulation cell division, Recombinant Proteins -- chemistry, Cupriavidus -- drug effects, Bacterial Proteins -- genetics, Protein Structure, Mutant Proteins -- metabolism, Heavy-metal resistance, Molecular Sequence Data, Cupriavidus -- genetics, 03 medical and health sciences, Bacterial Proteins, Metals, Heavy, Drug Resistance, Bacterial, Bacterial Proteins -- metabolism, Chimie, Amino Acid Sequence, Membrane Fusion Proteins, Mutant Proteins -- chemistry, Binding Sites, Sequence Homology, Amino Acid, Cupriavidus -- metabolism, Molecular, periplasmic adaptor protein, Protein Structure, Tertiary, Heavy -- toxicity, Amino Acid Substitution, Mutagenesis, Fourier Transform Infrared, Carrier Proteins -- genetics, X-Ray, Mutagenesis, Site-Directed, Mutant Proteins, Biochemistry and Cell Biology, Generic health relevance, Carrier Proteins, Cation Transport Proteins -- chemistry, Resistance nodulation cell division, Tertiary
Popis: Resistance nodulation cell division (RND)-based efflux complexes mediate multidrug and heavy-metal resistance in many Gram-negative bacteria. Efflux of toxic compounds is driven by membrane proton/substrate antiporters (RND protein) in the plasma membrane, linked by a membrane fusion protein (MFP) to an outer-membrane protein. The three-component complex forms an efflux system that spans the entire cell envelope. The MFP is required for the assembly of this complex and is proposed to play an important active role in substrate efflux. To better understand the role of MFPs in RND-driven efflux systems, we chose ZneB, the MFP component of the ZneCAB heavy-metal efflux system from Cupriavidus metallidurans CH34. ZneB is shown to be highly specific for Zn 2+ alone. The crystal structure of ZneB to 2.8 Å resolution defines the basis for metal ion binding in the coordination site at a flexible interface between the β-barrel and membrane proximal domains. The conformational differences observed between the crystal structures of metal-bound and apo forms are monitored in solution by spectroscopy and chromatography. The structural rearrangements between the two states suggest an active role in substrate efflux through metal binding and release.
Druh dokumentu: Article
Popis súboru: 1 full-text file(s): application/pdf
Jazyk: English
ISSN: 1091-6490
0027-8424
DOI: 10.1073/pnas.1003908107
Prístupová URL adresa: http://www.pnas.org/content/107/24/11038.full.pdf
https://pubmed.ncbi.nlm.nih.gov/20534468
https://researchportal.vub.be/en/publications/metal-induced-conformational-changes-in-zneb-suggest-an-active-ro
https://experts.umn.edu/en/publications/metal-induced-conformational-changes-in-zneb-suggest-an-active-ro
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2890744/
https://www.pnas.org/content/107/24/11038
http://www.rcsb.org/structure/3LNN
https://www.pnas.org/content/107/24/11038.full.pdf
https://escholarship.org/uc/item/0mc160kc
Prístupové číslo: edsair.doi.dedup.....ea6adf8474f7b6d7e37fe2d8e31c80f4
Databáza: OpenAIRE
Popis
Abstrakt:Resistance nodulation cell division (RND)-based efflux complexes mediate multidrug and heavy-metal resistance in many Gram-negative bacteria. Efflux of toxic compounds is driven by membrane proton/substrate antiporters (RND protein) in the plasma membrane, linked by a membrane fusion protein (MFP) to an outer-membrane protein. The three-component complex forms an efflux system that spans the entire cell envelope. The MFP is required for the assembly of this complex and is proposed to play an important active role in substrate efflux. To better understand the role of MFPs in RND-driven efflux systems, we chose ZneB, the MFP component of the ZneCAB heavy-metal efflux system from Cupriavidus metallidurans CH34. ZneB is shown to be highly specific for Zn 2+ alone. The crystal structure of ZneB to 2.8 Å resolution defines the basis for metal ion binding in the coordination site at a flexible interface between the β-barrel and membrane proximal domains. The conformational differences observed between the crystal structures of metal-bound and apo forms are monitored in solution by spectroscopy and chromatography. The structural rearrangements between the two states suggest an active role in substrate efflux through metal binding and release.
ISSN:10916490
00278424
DOI:10.1073/pnas.1003908107