AI Article Synopsis

  • The study introduces an artificial cobalt hemoprotein created by inserting cobalt heme into the artificial protein alpha Rep (αRep), which acts as an effective catalyst for hydrogen production and carbon monoxide reduction.
  • This metalloenzyme was analyzed using advanced techniques like MALDI-TOF MS and UV-Visible spectroscopy to understand its structure and the role of surrounding residues in coordinating the cobalt ion.
  • Results showed that embedding the Co(III)-porphyrin complex within the protein's hydrophobic cavity significantly boosted catalytic activity, suggesting further enhancements could be achieved through targeted modifications of the protein's structure.

Article Abstract

The covalent insertion of a cobalt heme into the cavity of an artificial protein named alpha Rep (αRep) leads to an artificial cobalt hemoprotein that is active as a catalyst not only for the photo-induced production of H, but also for the reduction of CO in a neutral aqueous solution. This new artificial metalloenzyme has been purified and characterized by Matrix Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry (MALDI-TOF MS), circular dichroism, and UltraViolet-Visible spectroscopy. Using theoretical experiments, the structure of this biohybrid and the positioning of the residues near the metal complex were examined, which made it possible to complete the coordination of the cobalt ion by an axial glutamine Gln283 ligand. While the Co(III)-porphyrin catalyst alone showed weak catalytic activity for both reactions, 10 times more H and four times more CO were produced when the Co(III)-porphyrin complex was buried in the hydrophobic cavity of the protein. This study thus provides a solid basis for further improvement of these biohybrids using well-designed modifications of the second and outer coordination sphere by site-directed mutagenesis of the host protein.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736947PMC
http://dx.doi.org/10.3390/ijms232314640DOI Listing

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