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January 14, 2026Journal of Bacteriology1 citationsOpen Access

Functional characterization of the polar organizer protein FimV in Pseudomonas putida

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LSLisa SchmidtJustus-Liebig-Universität GießenMPMarta Pulido-SánchezCentro Andaluz de Biología del DesarrolloATAnke Treuner-LangeMax Planck Institute for Terrestrial Microbiology

Key Points

  • To characterize the role of FimV in Pseudomonas putida regarding its cellular processes compared to homologs.
  • Cellular characterization of Pseudomonas putida FimV
  • Examination of protein domains and their functions
  • Comparison with homologous proteins HubP from Shewanella putrefaciens
  • Pseudomonas putida FimV is essential for flagellar-mediated swimming
  • FimV binds to peptidoglycan via the LysM domain
  • Distinct functions of Pp FimV differ from Shewanella HubP and others

Abstract

ABSTRACT Homologs of the polar landmark proteins HubP and FimV are widespread among bacterial species. They all share several common features, including a periplasmic LysM-like domain, a transmembrane region, an extensive cytoplasmic domain enriched in acidic amino acids, and a C-terminal tetrapeptid-repeat (TPR) domain referred to as the FimV domain. Apart from these conserved general features, however, the proteins exhibit little homology across different bacterial genera. Here, we characterized Pseudomonas putida FimV ( Pp FimV) with respect to cellular processes involving FimV or HubP in other species. We found that Pp FimV nonspecifically binds to peptidoglycan via its periplasmic LysM domain, which, together with an immunoglobulin-like domain, is necessary for proper polar positioning. Pp FimV is required for normal flagellar-mediated swimming and the placement of the chemotaxis system. However, Pp FimV is not involved in regulating the number of flagellar filaments, chromosome segregation, or type IV pilus-dependent surface motility. Thus, Pp FimV has surprisingly little functional overlap with, for example, HubP from Vibrio sp. or Shewanella putrefaciens or with FimV from P. aeruginosa. Pp FimV was unable to compensate for the loss of Sp HubP with regard to swimming in soft agar, and vice versa . Domain swapping between Sp HubP and Pp FimV revealed that differences in the cytoplasmic region between the transmembrane region and the C-terminal FimV domain likely account for the proteins’ distinct functions in flagella-mediated swimming. This suggests that FimV and HubP are structural homologs that have evolved to perform different, species-specific functions. IMPORTANCE Many bacterial species possess landmark proteins that organize the bacterial cell and localize specific cellular processes to the cell’s polar regions by directing client proteins or protein complexes to their designated positions. FimV and its homolog HubP are landmark proteins found in many species of the gammaproteobacteria, but their roles are not well understood. Here, we demonstrate that only certain functions related to flagella-mediated motility appear to be conserved between Pseudomonas putida FimV and Shewanella putrefaciens HubP. This finding suggests a significant degree of functional diversity.

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Cite This Study

Schmidt et al. (2026) studied this question.

synapsesocial.com/papers/6966f31d13bf7a6f02c00be7https://doi.org/10.1128/jb.00497-25
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