화학공학소재연구정보센터
Biochemical and Biophysical Research Communications, Vol.516, No.3, 801-805, 2019
Crystal structure and proposed mechanism of an enantioselective hydroalkoxylation enzyme from Penicillium herquei
Hydroalkoxylation is a useful and efficient reaction which generates C-O bond and produces cyclic ethers, the common structural elements of natural products. The dedicative enzyme which can catalyze enantioselective hydroalkoxylation named PhnH was recently identified in the herqueinone biosynthetic gene from Penicillium herquei. It catalyzes addition of a phenol to the terminal olefin on substrate to produce a dihydrobenzofuran. Here, the crystal structure of PhnH is reported and the putative substrate binding pocket is illustrated. Through docking experiment, possible substrate-binding poses are displayed and the catalytic mechanism is therefore proposed. Our findings form the basis for further studies of enantioselective hydroalkoxylation enzymes. (C) 2019 Elsevier Inc. All rights reserved.