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Synthesis of fatty acid esters by recombinant Staphylococcus epidermidis lipases in aqueous environment

机译:水性环境中重组表皮葡萄球菌脂肪酶合成脂肪酸酯。

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Various flavor esters were obtained by using recombinant lipases from Staphylococcus epidermidis as a catalyst in an aqueous environment. These esters were enzymatically synthesized to overcome the problems associated with chemical processes. This study showed that the S. epidermidis lipases could catalyze ester synthesis from decyl alcohol and fatty acids of different chain length. The wildtype and mutant lipases (M419A and V649I) could efficiently catalyze the synthesis of decyl alcohol eaters of unsaturated fatty acids. In contrast, the yield of decyl laurate was better by wild-type and mutant enzyme V6491, but mutant enzyme M419A only favored the synthesis of decyl myristate. The esterification of oleic acid and various carbon-chain-length alcohols from ethanol to hexadecanol increased up to decanol by wild-type and M419A mutant enzymes and reached an optimum for dodecanol by V6491 mutant enzyme. The enzyme is potentially useful in food industries such as dairy product flavoring. [References: 29]
机译:通过使用表皮葡萄球菌的重组脂肪酶作为水性环境中的催化剂,获得了各种风味酯。通过酶促合成这些酯来克服与化学过程相关的问题。这项研究表明表皮葡萄球菌脂肪酶可以催化由癸醇和不同链长的脂肪酸合成酯。野生型和突变型脂肪酶(M419A和V649I)可以有效地催化不饱和脂肪酸癸醇酯的合成。相反,野生型和突变型酶V6491的月桂酸癸酯的产率更高,但突变型酶M419A仅有利于肉豆蔻酸癸酯的合成。油酸和各种碳链长度的醇从乙醇到十六烷醇的酯化反应通过野生型和M419A突变酶增加到癸醇,而通过V6491突变酶达到十二烷醇的最佳选择。该酶可能在食品工业中有用,例如乳制品调味剂。 [参考:29]

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