期刊
CURRENT OPINION IN BIOTECHNOLOGY
卷 16, 期 3, 页码 308-314出版社
ELSEVIER SCI LTD
DOI: 10.1016/j.copbio.2005.04.005
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As highly reduced hydrocarbons are abundant in the environment, enzymes that catalyze the terminal or subterminal oxygenation of alkanes are relatively easy to find. A number of these enzymes have been biochemically characterized in detail, because the potential of alkane hydroxylases to catalyze high added-value reactions is widely recognized. Nevertheless, the industrial application of these enzymes is restricted owing to the complex biochemistry, challenging process requirements, and the limited number of cloned and expressed enzymes. Rational and evolutionary engineering approaches have started to yield more robust and versatile enzyme systems, broadening the alkane oxygenase portfolio. In addition, metagenomic approaches. provide access to many novel alkane oxygenase sequences.
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