1. Analysis of HmsH and its role in plague biofilm formation
- Author
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Jacqueline D. Fetherston, Robert D. Perry, and Arwa Abu Khweek
- Subjects
Protein Conformation ,Yersinia pestis ,Molecular Sequence Data ,Microbiology ,Microbial Pathogenicity ,Conserved sequence ,Mice ,Protein structure ,Animals ,Amino Acid Sequence ,Peptide sequence ,Conserved Sequence ,Alanine ,Plague ,biology ,Periplasmic space ,Alanine scanning ,biology.organism_classification ,Molecular biology ,Mutagenesis ,Biofilms ,Hemin ,Siphonaptera ,Bacterial outer membrane ,Bacterial Outer Membrane Proteins - Abstract
TheYersinia pestisHms+phenotype is a manifestation of biofilm formation that causes adsorption of Congo red and haemin at 26 °C but not at 37 °C. This phenotype is required for blockage of the proventricular valve of the oriental rat flea and plays a role in transmission of bubonic plague from fleas to mammals. Genes responsible for this phenotype are located in three separate operons,hmsHFRS,hmsTandhmsP.HmsH and HmsF are outer membrane (OM) proteins, while the other four Hms proteins are located in the inner membrane. According to the Hidden Markov Method-based predictor, HmsH has a large N terminus in the periplasm, aβ-barrel structure with 16β-strands that traverse the OM, eight surface-exposed loops, and seven short turns connecting theβ-strands on the periplasmic side. Here, we demonstrate that HmsH is a heat-modifiable protein, a characteristic of otherβ-barrel proteins, thereby supporting the bioinformatics analysis. Alanine scanning mutagenesis was used to identify conserved amino acids in the HmsH-like family that are critical for the function of HmsH in biofilm formation. Of 23 conserved amino acids mutated, four residues affected HmsH function and three likely caused protein instability. We used formaldehyde cross-linking to demonstrate that HmsH interacts with HmsF but not with HmsR, HmsS, HmsT or HmsP. Loss-of-function HmsH variants with single alanine substitutions retained theirβ-structure and interaction with HmsF. Finally, using a polarhmsH : : mini-kanmutant, we demonstrated that biofilm development is not important for the pathogenesis of bubonic or pneumonic plague in mice.
- Published
- 2010