Phospholipase A sub(2)-catalyzed acylation of lysophospholipids analyzed by experimental design

The catalytic potential of phospholipase A sub(2) (PLA sub(2)) for the synthesis of phospholipids with defined fatty acid structure in the sn-2 position has been underestimated hitherto because of very low conversion in most organic solvents. One of the most suitable solvents for PLA sub(2)-catalyze...

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Published inEnzyme and microbial technology Vol. 64-65; pp. 60 - 66
Main Authors Lux, Gabriele, Mansfeld, Johanna, Ulbrich-Hofmann, Renate
Format Journal Article
LanguageEnglish
Published 01.10.2014
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Summary:The catalytic potential of phospholipase A sub(2) (PLA sub(2)) for the synthesis of phospholipids with defined fatty acid structure in the sn-2 position has been underestimated hitherto because of very low conversion in most organic solvents. One of the most suitable solvents for PLA sub(2)-catalyzed phospholipid synthesis is glycerol. With the aim to analyze the effect of several interacting reaction parameters on the product yield, we studied the conversion of 1-palmitoyl-2-lyso-sn-glycero-3-phosphocholine (lyso-PC) with oleic acid as model reaction in mixtures of glycerol and methanol or ethanol by methods of experimental design. PLA sub(2) from porcine pancreas (ppPLA sub(2)) and from bee venom (bvPLA sub(2)) were compared as catalysts. For each of the four systems, nine variables were evaluated using Plackett-Burman designs. The most significant four variables were used for subsequent modified D-optimal designs with 30 runs, yielding regression equations for describing the formation of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine as a function of the variables. In both solvent systems ppPLA sub(2) was more appropriate for the acylation reaction than bvPLA sub(2). Methanol proved to be more convenient as co-solvent than ethanol. The catalysis by ppPLA sub(2) was more sensitive toward the variables temperature and concentration of Tris-HCl, whereas the reaction time and enzyme activity were more important in the acylation by bvPLA sub(2). Conversion up to 87 (ppPLA sub(2)) and 50% (bvPLA sub(2)) can be anticipated. Abbreviations * bvPLA sub(2), phospholipase A sub(2) from bee venom * DOPC, 1,2-dioleoyl-sn-glycero-3-phosphocholine * lyso-PC, 1-palmitoyl-2-lyso-sn-glycero-3-phosphocholine * PLA sub(2), phospholipase A sub(2) * POPC, 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine * ppPLA sub(2), phospholipase A sub(2) from porcine pancreas * SDS, sodium dodecylsulfate
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ISSN:0141-0229
DOI:10.1016/j.enzmictec.2014.07.003