Fujii, Sotaro and Wilson, Michael T and Adams, Hannah R and Svistunenko, Dimitri A and Hough, Michael A and et al (2024) Conformational rigidity of cytochrome c'-α from a thermophile is associated with slow NO binding. Biophysical Journal, 123 (16). pp. 2594-2603. DOI https://doi.org/10.1016/j.bpj.2024.06.026
Fujii, Sotaro and Wilson, Michael T and Adams, Hannah R and Svistunenko, Dimitri A and Hough, Michael A and et al (2024) Conformational rigidity of cytochrome c'-α from a thermophile is associated with slow NO binding. Biophysical Journal, 123 (16). pp. 2594-2603. DOI https://doi.org/10.1016/j.bpj.2024.06.026
Fujii, Sotaro and Wilson, Michael T and Adams, Hannah R and Svistunenko, Dimitri A and Hough, Michael A and et al (2024) Conformational rigidity of cytochrome c'-α from a thermophile is associated with slow NO binding. Biophysical Journal, 123 (16). pp. 2594-2603. DOI https://doi.org/10.1016/j.bpj.2024.06.026
Abstract
Cytochromes c′-α are nitric oxide (NO)-binding heme proteins derived from bacteria that can thrive in a wide range of temperature environments. Studies of mesophilic Alcaligenes xylosoxidans cytochrome c′-α (AxCP-α) have revealed an unusual NO-binding mechanism involving both heme faces, in which NO first binds to form a distal hexa-coordinate Fe(II)-NO (6cNO) intermediate and then displaces the proximal His to form a proximal penta-coordinate Fe(II)-NO (5cNO) final product. Here, we characterize a thermally stable cytochrome c′-α from thermophilic Hydrogenophilus thermoluteolus (PhCP-α) to understand how protein thermal stability affects NO binding. Electron paramagnetic and resonance Raman spectroscopies reveal the formation of a PhCP-α 5cNO product, with time-resolved (stopped-flow) UV-vis absorbance indicating the involvement of a 6cNO intermediate. Relative to AxCP-α, the rates of 6cNO and 5cNO formation in PhCP-α are ∼11- and ∼13-fold lower, respectively. Notably, x-ray crystal structures of PhCP-α in the presence and absence of NO suggest that the sluggish formation of the proximal 5cNO product results from conformational rigidity: the Arg-132 residue (adjacent to the proximal His ligand) is held in place by a salt bridge between Arg-75 and Glu-135 (an interaction not present in AxCP-α or a psychrophilic counterpart). Overall, our data provide fresh insights into structural factors controlling NO binding in heme proteins, including 5cNO complexes relevant to eukaryotic NO sensors.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Hydrogenophilaceae; Nitric Oxide; Cytochromes c'; Temperature; Protein Conformation; Protein Binding; Kinetics; Models, Molecular |
| Divisions: | Faculty of Science and Health Faculty of Science and Health > Life Sciences, School of |
| SWORD Depositor: | Unnamed user with email elements@essex.ac.uk |
| Depositing User: | Unnamed user with email elements@essex.ac.uk |
| Date Deposited: | 29 Apr 2026 15:36 |
| Last Modified: | 29 Apr 2026 15:36 |
| URI: | http://repository.essex.ac.uk/id/eprint/40144 |
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