Larios Araceli, García Hugo S, Oliart Rosa María, Valerio-Alfaro Gerardo
Instituto Tecnológico de Veracruz, UNIDA, Av. Miguel A. de Quevedo 2779, 91897, Veracruz, Ver., Mexico.
Appl Microbiol Biotechnol. 2004 Sep;65(4):373-6. doi: 10.1007/s00253-004-1602-x. Epub 2004 Jul 10.
Candida antarctica lipase fraction B (CAL-B) showed substrate specificity in the synthesis of esters in hexane involving reactions of short-chain acids having linear (acetic and butyric acids) and branched chain (isovaleric acid) structures, an unsaturated (tiglic acid) fatty acid, and phenylacetic acid with n-butanol and geraniol. The variation in the conversion to the esters was ca. 10%. Similar results were observed in a study of the alcohol specificity of the enzyme for esterification of acetic and butyric acids with four alcohols: n-butyl, isopentyl, 2-phenylethyl, and geraniol. Enantioselectivity of CAL-B in hexane with a range of chiral alpha-substituted or beta-substituted carboxylic acids and n-butyl alcohol was analyzed. The results show that CAL-B can be employed as a robust biocatalyst in esterification reactions due to the high conversions obtained in the synthesis of short-chain flavor esters in an organic solvent, although this enzyme exhibited modest enantioselectivity with chiral short-chain carboxylic acids.
南极假丝酵母脂肪酶B(CAL-B)在己烷中酯合成反应中表现出底物特异性,该反应涉及具有直链(乙酸和丁酸)和支链(异戊酸)结构的短链酸、不饱和(惕各酸)脂肪酸以及苯乙酸与正丁醇和香叶醇的反应。酯转化率的变化约为10%。在用四种醇(正丁醇、异戊醇、2-苯乙醇和香叶醇)对乙酸和丁酸进行酯化反应的酶醇特异性研究中也观察到了类似结果。分析了CAL-B在己烷中对一系列手性α-取代或β-取代羧酸与正丁醇的对映选择性。结果表明,尽管该酶对手性短链羧酸的对映选择性适中,但由于在有机溶剂中合成短链风味酯时能获得高转化率,CAL-B可作为酯化反应中一种强大的生物催化剂。