Yuan_2014_Int.J.Mol.Sci_15_10554

Reference

Title : Biochemical properties of a new cold-active mono- and diacylglycerol lipase from marine member Janibacter sp. strain HTCC2649 - Yuan_2014_Int.J.Mol.Sci_15_10554
Author(s) : Yuan D , Lan D , Xin R , Yang B , Wang Y
Ref : Int J Mol Sci , 15 :10554 , 2014
Abstract :

Mono- and di-acylglycerol lipase has been applied to industrial usage in oil modification for its special substrate selectivity. Until now, the reported mono- and di-acylglycerol lipases from microorganism are limited, and there is no report on the mono- and di-acylglycerol lipase from bacteria. A predicted lipase (named MAJ1) from marine Janibacter sp. strain HTCC2649 was purified and biochemical characterized. MAJ1 was clustered in the family I.7 of esterase/lipase. The optimum activity of the purified MAJ1 occurred at pH 7.0 and 30 degrees C. The enzyme retained 50% of the optimum activity at 5 degrees C, indicating that MAJ1 is a cold-active lipase. The enzyme activity was stable in the presence of various metal ions, and inhibited in EDTA. MAJ1 was resistant to detergents. MAJ1 preferentially hydrolyzed mono- and di-acylglycerols, but did not show activity to triacylglycerols of camellia oil substrates. Further, MAJ1 is low homologous to that of the reported fungal diacylglycerol lipases, including Malassezia globosa lipase 1 (SMG1), Penicillium camembertii lipase U-150 (PCL), and Aspergillus oryzae lipase (AOL). Thus, we identified a novel cold-active bacterial lipase with a sn-1/3 preference towards mono- and di-acylglycerides for the first time. Moreover, it has the potential, in oil modification, for special substrate selectivity.

PubMedSearch : Yuan_2014_Int.J.Mol.Sci_15_10554
PubMedID: 24927145
Gene_locus related to this paper: 9mico-a3tmr7

Related information

Gene_locus 9mico-a3tmr7

Citations formats

Yuan D, Lan D, Xin R, Yang B, Wang Y (2014)
Biochemical properties of a new cold-active mono- and diacylglycerol lipase from marine member Janibacter sp. strain HTCC2649
Int J Mol Sci 15 :10554

Yuan D, Lan D, Xin R, Yang B, Wang Y (2014)
Int J Mol Sci 15 :10554