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Spiers Memorial Lecture: Shielding the active site: a streptavidin superoxide-dismutase chimera as a host protein for asymmetric transfer hydrogenation.

Authors :
Igareta NV
Tachibana R
Spiess DC
Peterson RL
Ward TR
Source :
Faraday discussions [Faraday Discuss] 2023 Aug 11; Vol. 244 (0), pp. 9-20. Date of Electronic Publication: 2023 Aug 11.
Publication Year :
2023

Abstract

By anchoring a metal cofactor within a host protein, so-called artificial metalloenzymes can be generated. Such hybrid catalysts combine the versatility of transition metals in catalyzing new-to-nature reactions with the power of genetic-engineering to evolve proteins. With the aim of gaining better control over second coordination-sphere interactions between a streptavidin host-protein (Sav) and a biotinylated cofactor, we engineered a hydrophobic dimerization domain, borrowed from superoxide dismutase C (SOD), on Sav's biotin-binding vestibule. The influence of the SOD dimerization domain (DD) on the performance of an asymmetric transfer hydrogenase (ATHase) resulting from anchoring a biotinylated Cp*Ir-cofactor - [Cp*Ir(biot- p -L)Cl] (1-Cl) - within Sav-SOD is reported herein. We show that, depending on the nature of the residue at position Sav S112, the introduction of the SOD DD on the biotin-binding vestibule leads to an inversion of configuration of the reduction product, as well as a fivefold increase in catalytic efficiency. The findings are rationalized by QM/MM calculations, combined with X-ray crystallography.

Details

Language :
English
ISSN :
1364-5498
Volume :
244
Issue :
0
Database :
MEDLINE
Journal :
Faraday discussions
Publication Type :
Academic Journal
Accession number :
36924204
Full Text :
https://doi.org/10.1039/d3fd00034f