← Back to Explore

New York-Long Island Biophysical investigations into the structure and function of Pseudomonas aeruginosa nitric oxide signaling system

JSHS · 2025

Overview

Nitric oxide sensing proteins (NosPs), have been studied as important signaling molecules in various organisms. Particularly in Pseudomonas aeruginosa, NosP plays a role in heme binding and controlling the phosphorylation of NosP’s associated histidine kinase, NahK. Recently, heme binding has been of particular interest and how this is associated with the signaling pathways in bacterial biofilm formation. Computational structural characterization of P. aeruginosa NosP predicts that heme binding occurs between the “tri -symmetrical base” and “dis ordered cap” regions. The cap is believed to open and secure the heme in position. Despite these predictions, the role of NosP’s cap remains poorly uncharacterized. As a result, it was hypothesized that generating a NosP construct without the cap (Δ208-301) will greatly diminish kinase inhibition and heme binding during in vivo and in vitro testing. To test this, capless, tagless, NosP was generated and purified, and the apo, ferric, and ferrous complex ligation states were assessed with UV -Vis spectroscopy. The inhibitory potential of these complexes with NahK was tested using HPLC analysis. The phenotypes downstream of NahK, such as the production of pyocyanin and swarming motility, were checked to see if the cap affects the ability of it to i nhibit NahK. Interestingly, the in vivo data shows strong phenotypic evidence of the capless NosP exhibiting tighter inhibition, while the preliminary investigation into the capless mutant’s heme binding properties show altered mechanics and reduced inhibi tion in vitro . Therefore, future work is needed to further understand how the heme binding plays a role in kinase inhibition.

Competition history

  • JSHS 2025 Category not listed

Resources

Related projects

Closest projects by meaning, across every fair and year in the corpus.

Source: Junior Science and Humanities Symposium

Save projects to your library

Sign in with Google to keep track of projects you find interesting, organized into folders. An account also raises your daily allowance for “Has this been done?”, and lets you create a key for the MCP server with a much higher limit than anonymous use. Browsing stays public.

Continue with Google