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Identifying Assembly-Inhibiting and Assembly-Tolerant Sites in the SbsB S-Layer Protein from Geobacillus stearothermophilus
Authors:Helen Kinns  Helga Badelt-Lichtblau  Eva Maria Egelseer  Stefan Howorka
Affiliation:1 Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, UK
2 Department of Nanobiotechnology, University of Natural Resources and Applied Life Sciences, Vienna, Austria
Abstract:Surface layer (S-layer) proteins self-assemble into two-dimensional crystalline lattices that cover the cell wall of all archaea and many bacteria. We have generated assembly-negative protein variants of high solubility that will facilitate high-resolution structure determination. Assembly-negative versions of the S-layer protein SbsB from Geobacillus stearothermophilus PV72/p2 were obtained using an insertion mutagenesis screen. The haemagglutinin epitope tag was inserted at 23 amino acid positions known to be located on the monomer protein surface from a previous cysteine accessibility screen. Limited proteolysis, circular dichroism, and fluorescence were used to probe whether the epitope insertion affected the secondary and tertiary structures of the monomer, while electron microscopy and size-exclusion chromatography were employed to examine proteins' ability to self-assemble. The screen not only identified assembly-compromised mutants with native fold but also yielded correctly folded, self-assembling mutants suitable for displaying epitopes for biomedical and biophysical applications, as well as cryo-electron microscopy imaging. Our study marks an important step in the analysis of the S-layer structure. In addition, the approach of concerted insertion and cysteine mutagenesis can likely be applied for other supramolecular assemblies.
Keywords:2D, two-dimensional   EM, electron microscopy   Gdm.HCl, guanidinium hydrochloride   HA, haemagglutinin   NTA, nitrilotriacetic acid   S-layer, bacterial surface layer   WT, wild type
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