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Crystal Structure of the Membrane Fusion Protein CusB from Escherichia coli
Authors:Chih-Chia Su  Feng Yang  Feng Long  Mathew D. Routh  Adam K. Mokhtari  Katherine L. Rabe  Young Jin Lee  Edward W. Yu
Affiliation:1 Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, IA 50011, USA
2 Department of Physics and Astronomy, Iowa State University, Ames, IA 50011, USA
3 Molecular, Cellular and Developmental Biology Interdepartmental Graduate Program, Iowa State University, Ames, IA 50011, USA
4 Bioinformatics and Computational Biology Interdepartmental Graduate Program, Iowa State University, Ames, IA 50011, USA
5 Department of Chemistry, Iowa State University, Ames, IA 50011, USA
6 Advanced Photon Source, NE-CAT, Building 436E, Argonne National Laboratory, Argonne, IL 60439, USA
Abstract:Gram-negative bacteria, such as Escherichia coli, frequently utilize tripartite efflux complexes belonging to the resistance-nodulation-division family to expel diverse toxic compounds from the cell. These systems contain a periplasmic membrane fusion protein (MFP) that is critical for substrate transport. We here present the x-ray structures of the CusB MFP from the copper/silver efflux system of E. coli. This is the first structure of any MFPs associated with heavy-metal efflux transporters. CusB bridges the inner-membrane efflux pump CusA and outer-membrane channel CusC to mediate resistance to Cu+ and Ag+ ions. Two distinct structures of the elongated molecules of CusB were found in the asymmetric unit of a single crystal, which suggests the flexible nature of this protein. Each protomer of CusB can be divided into four different domains, whereby the first three domains are mostly β-strands and the last domain adopts an entirely helical architecture. Unlike other known structures of MFPs, the α-helical domain of CusB is folded into a three-helix bundle. This three-helix bundle presumably interacts with the periplasmic domain of CusC. The N- and C-termini of CusB form the first β-strand domain, which is found to interact with the periplasmic domain of the CusA efflux pump. Atomic details of how this efflux protein binds Cu+ and Ag+ were revealed by the crystals of the CusB-Cu(I) and CusB-Ag(I) complexes. The structures indicate that CusB consists of multiple binding sites for these metal ions. These findings reveal novel structural features of an MFP in the resistance-nodulation-division efflux system and provide direct evidence that this protein specifically interacts with transported substrates.
Keywords:MFP, membrane fusion protein   RND, resistance-nodulation-division   MAD, multiple-wavelength anomalous dispersion   SeMet, selenomethionyl   DSS, disuccinimidyl suberate   LC-MS/MS, liquid chromatography-tandem mass spectrometry   LB, Luria-Bertani   DDM, n-dodecyl-β-  smallcaps"  >d-maltoside   PEG, polyethylene glycol
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