Publication Type Journal Article
Title Toward the Mechanistic Understanding of Enzymatic CO2 Reduction
Authors Ana Rita Oliveira Cristiano Mota Claudia Mourato Renato M. Domingos Marino F.A. Santos Diana Gesto Bruno Guigliarelli Teresa Santos-Silva Maria J. Romao Ines A. C. Pereira
Groups BIOIN
Journal ACS CATALYSIS
Year 2020
Month March
Volume 10
Number 6
Pages 3844-3856
Abstract Reducing CO2 is a challenging chemical transformation that biology solves easily, with high efficiency and specificity. In particular, formate dehydrogenases are of great interest since they reduce CO2 to formate, a valuable chemical fuel and hydrogen storage compound. The metal-dependent formate dehydrogenases of prokaryotes can show high activity for CO2 reduction. Here, we report an expression system to produce recombinant W/Sec-FdhAB from Desulfovibrio vulgaris Hilden-borough fully loaded with cofactors, its catalytic characterization and crystal structures in oxidized and reduced states. The enzyme has very high activity for CO2 reduction and displays remarkable oxygen stability. The crystal structure of the formate-reduced enzyme shows Sec still coordinating the tungsten, supporting a mechanism of stable metal coordination during catalysis. Comparison of the oxidized and reduced structures shows significant changes close to the active site. The DvFdhAB is an excellent model for studying catalytic CO2 reduction and probing the mechanism of this conversion.
DOI http://dx.doi.org/10.1021/acscatal.0c00086
ISBN
Publisher AMER CHEMICAL SOC
Book Title
ISSN 2155-5435
EISSN
Conference Name
Bibtex ID ISI:000526394500038
Observations
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