Artificial Metalloproteins Containing Co<sub>4</sub>O<sub>4</sub> Cubane Active Sites
Article 2018 en
Authors
LO
Lisa Olshansky
RH
Raúl Huerta‐Lavorie
AN
Andy I. Nguyen
Abstract
1 min read
Artificial metalloproteins (ArMs) containing Co<sub>4</sub>O<sub>4</sub> cubane active sites were constructed via biotin-streptavidin technology. Stabilized by hydrogen bonds (H-bonds), terminal and cofacial Co<sup>III</sup>-OH<sub>2</sub> moieties are observed crystallographically in a series of immobilized cubane sites. Solution electrochemistry provided correlations of oxidation potential and pH. For variants containing Ser and Phe adjacent to the metallocofactor, 1e<sup>-</sup>/1H<sup>+</sup> chemistry predominates until pH 8, above which the oxidation becomes pH-independent. Installation of Tyr proximal to the Co<sub>4</sub>O<sub>4</sub> active site provided a single H-bond to one of a set of cofacial Co<sup>III</sup>-OH<sub>2</sub> groups. With this variant, multi-e<sup>-</sup>/multi-H<sup>+</sup> chemistry is observed, along with a change in mechanism at pH 9.5 that is consistent with Tyr deprotonation. With structural similarities to both the oxygen-evolving complex of photosystem II (H-bonded Tyr) and to thin film water oxidation catalysts (Co<sub>4</sub>O<sub>4</sub> core), these findings bridge synthetic and biological systems for water oxidation, highlighting the importance of secondary sphere interactions in mediating multi-e<sup>-</sup>/multi-H<sup>+</sup> reactivity.
Andy I. Nguyen, Kurt M. Van Allsburg, Maxwell W. Terban, Michal Bajdich, Julia Oktawiec, Jaruwan Amtawong, Micah S. Ziegler, James P. Dombrowski, K. V. Lakshmi, Walter S. Drisdell, Junko Yano, Simon J. L. Billinge, T Don Tilley
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