Main projects results and possibilities to exploit them:
• Establishing heterogenous overexpresion conditions for three S.aureus USA300 proteins, parts of the FMMs: FloA, Pbp2a and SA1401Establishing purification strategy for three membrane proteins using detergents: FloA, Pbp2a and SA1401
• Extensive in vitro interaction studies and complex formation between Pbp2a-FloA-this will allow for further biochemical, biophysical and functional analysis of the proteins, possible complees formation and structural analysis.
• Biochemcal characterization of the newly discovered Pbp2a dimer by Size Exclusion Chromatography, Glycerol gradient, SEC-MALS, crosslinking-Mass-Spec, Bacterial Two hybrid, site-directed mutagenesis, this obtained results represent a novelty in the field of the antibiotic resistance, so all the studies were performed based on the truncated, soluable and monomeric form of the Pbp2a. The dimer formation may implicate different mechanism of antibiotic resistance and function of the protein in cell wall synthesis.
• Structural study of the uncharacterized S. aureus protein SA1401 by cryo-EM, 8 Å resolution structure was obtained allowing for fitting of the predicted atomic model, as a result a pseudo atomic model was obtained showing the mechanism of membrane insertion and remodeling. These results are entirely novel line of research revealing structure and function of uncharacterized protein from MRSA S. aureus that is involved in the formation of Functional Membrane Microdomains and pathogenesis.
• Membrane localization of the FMMs by tagging SA1401 by CLEM and immunolabeling. – CLEM has never been used for the protein localization in organisms as small as bacterial cells this innovative approach can be applied to other bacterial cells types and further developed for cryo-CLEM conditions.