In-Cell Engineering of Protein Crystals into Hybrid Solid Catalysts for Artificial Photosynthesis.
basic_science · Level V
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- Record sourced from PubMed, PMID 37435930.
- Also identified by DOI 10.1021/acs.nanolett.3c02355.
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Abstract
The emergence of protein-based crystalline materials offers promising opportunities in enzyme immobilization. However, the current systems used for encapsulation of protein crystals are limited to either exogenous small molecules or monomeric proteins. In this work, polyhedra crystals were used to simultaneously encapsulate the foreign enzymes FDH and the organic photocatalyst eosin Y. These hybrid protein crystals are prepared easily by cocrystallization <i>within a cell</i> without a requirement for complex purification processes because they spontaneously form 1 μm scale solid particles. After immobilization within protein crystals, the recombinant FDH is recyclable and thermally stable and maintains 94.4% activity compared to the free enzyme. In addition, the incorporation of eosin Y endows the solid catalyst with CO<sub>2</sub>-formate conversion activity based on a cascade reaction. This work indicates that engineering protein crystals by both <i>in vivo</i> and <i>in vitro</i> strategies will provide robust and environmentally friendly solid catalysts for artificial photosynthesis.
Medical subject headings
- Proteins
- Photosynthesis