AI Article Synopsis

  • Membrane proteins are essential for various cellular functions but are challenging to study due to difficulties in their expression and purification.
  • A new strategy builds on previous methods to effectively express and purify membrane proteins related to antibiotic resistance and environmental sensing, specifically highlighting successes with Enterococcus and Streptococcus pneumoniae proteins.
  • The study further explores isolated sensory domain fragments and demonstrates the robustness of the VicK protein, including insights into its thermal denaturation and ligand interactions, laying groundwork for future research on membrane protein behavior.

Article Abstract

Despite the importance of membrane proteins in cellular processes, studies of these hydrophobic proteins present major technical challenges, including expression and purification for structural and biophysical studies. A modified strategy of that proposed previously by Saidijam et al. (2005) and others, for the routine expression of bacterial membrane proteins involved in environmental sensing and antimicrobial resistance (AMR), is proposed which results in purification of sufficient proteins for biophysical experiments. We report expression successes amongst a collection of enterococcal vancomycin resistance membrane proteins: VanT, VanT-M transporter domain, VanZ and the previously characterised VanS (A-type) histidine protein kinase (HPK). Using the same strategy, we report on the successful amplification and purification of intact BlpH and ComD2 HPKs of Streptococcus pneumoniae. Near-UV circular dichroism revealed both recombinant proteins bound their pheromone ligands BlpC and CSP2. Interestingly, CSP1 also interacted with ComD. Finally, we evaluate the alternative strategy for studying sensory HPKs involving isolated soluble sensory domain fragments, exemplified by successful production of VicK of Enterococcus faecalis VicK. Purified VicK possessed secondary structure post-purification. Thermal denaturation experiments using far-UV CD, a technique which can be revealing regarding ligand binding, revealed that: (a) VicK denaturation occurs between 15 and 50 °C; and (b) reducing conditions did not detectably affect denaturation profiles suggesting reducing conditions per se are not directly sensed by VicK. Our findings provide information on a modified strategy for the successful expression, production and/or storage of bacterial membrane HPKs, AMR proteins and sensory domains for their future crystallisation, and ligand binding studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6182600PMC
http://dx.doi.org/10.1007/s00249-018-1325-zDOI Listing

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