4.3 Article

Characterization of a new sn-1,3-regioselective triacylglycerol lipase from Malbranchea cinnamomea

Journal

BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY
Volume 63, Issue 4, Pages 471-478

Publisher

WILEY
DOI: 10.1002/bab.1394

Keywords

characteristics; esterification; lipase; Malbranchea cinnamomea; sn-1; 3-regioselectivity; thermostable

Funding

  1. Aalborg University, Faculty of Engineering and Science
  2. BioValue/SPIR grant from the Danish Council for Strategic Research [DSF 0603-00522B]
  3. Danish Council for Technology and Innovation

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The thermophilic ascomycetous fungus Malbranchea cinnamomea produces lipases (EC 3.1.1.3) that allow it to grow efficiently on medium containing triacylglycerol substrates such as plant oils or tributyrin as sole carbon source. In the transcriptome of M. cinnamomea grown on olive oil, we found one cDNA sequence encoding a putative extracellular lipase. This gene, termed as MclipA, was cloned and heterologously expressed in Pichia pastoris. The recombinant protein, rMclipA, catalyzed the hydrolysis of short-chain fatty acid ester such as p-nitrophenyl butyrate (C4) and long-chain fatty acid ester such as p-nitrophenyl myristate (C14). These results indicate that MclipA is a true triacylglycerol lipase. For rMclipA, the optimum lipase activity was obtained at 45 degrees C, and more than 93% of enzyme activity was retained after 24H of incubation at temperatures up to 50 degrees C. rMclipA was active toward p-nitrophenyl esters of various carbon chain lengths with peak activity on long-chain fatty acid (C14). rMclipA displayed high sn-1,3-regioselectivity on hydrolyzing triolein. rMclipA can catalyze oleic acid methyl ester synthesis resulting in a 71% esterification degree after 24H of reaction at 40 degrees C. These properties suggest that rMclipA has potential application in, for example, selective hydrolysis of oil, modification of triacylglycerol, and production of biodiesel.

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