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Reverse protein engineering of a novel 4-domain copper nitrite reductase reveals functional regulation by protein-protein interaction

FEBS J. 2020-04; 
Daisuke Sasaki, Tatiana F Watanabe, Robert R Eady, Richard C Garratt, Svetlana V Antonyuk, S Samar Hasnain
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摘要

Cu-containing nitrite reductases that convert NO to NO are critical enzymes in nitrogen-based energy metabolism. Among organisms in the order Rhizobiales, we have identified two copies of nirK, one encoding a new class of 4-domain CuNiR that has both cytochrome and cupredoxin domains fused at the N terminus and the other, a classical 2-domain CuNiR (Br NiR). We report the first enzymatic studies of a novel 4-domain CuNiR from Bradyrhizobium sp. ORS 375 (BrNiR), its genetically engineered 3- and 2-domain variants, and Br NiR revealing up to ~ 500-fold difference in catalytic efficiency in comparison with classical 2-domain CuNiRs. Contrary to the expectation that tethering would enhance electron delivery by re... More

关键词

catalysis, denitrification, electron transfer, multidomain protein, protein engineering
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