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Updated: Aug 2, 2026

Production, Crystallization and Structure Determination of C. difficile PPEP-1 via Microseeding and Zinc-SAD
Published on: December 30, 2016
Solving a 300 kDa multimeric protein by low-resolution MAD phasing and averaging/phase extension
1Institut de Biologia Molecular de Barcelona, CSIC, c/Jorda Girona 18-26, E-08034 Barcelona, Spain. xgrcri@ibmb.csic.es
Abstract:
The structure of the conjugative coupling protein TrwBDeltaN70 from Escherichia coli plasmid R388 was solved using two crystal forms. This large multimeric membrane protein of 437 residues per monomer is involved in cell-to-cell single-strand DNA transfer. Diffraction data to 2.4 A were available from trigonal crystals obtained from ammonium sulfate and to 2.5 A from monoclinic crystals grown from tartrate. A single tantalum bromide (Ta(6)Br(12)(2+)) derivative of the trigonal form, which presented a protein hexamer with C6 local symmetry in the asymmetric unit, was used in a three-wavelength MAD experiment to achieve 4.5 A resolution for initial phases. Sixfold averaging and phase extension increased the effective phasing resolution and eventually produced a straightforwardly traceable electron-density map. The monoclinic structure was solved by molecular replacement, i.e. a hexamer of the trigonal form was used as a search model. Two such hexamers are present in the asymmetric unit.

