Biochemical Process Engineering, Division of Chemical Engineering, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, SE-97187, Luleå, Sweden.
Dupont Industrial Biosciences, Nieuwe Kanaal 7-S, 6709 PA, Wageningen, The Netherlands.
Enzyme Microb Technol. 2019 Jan;120:124-135. doi: 10.1016/j.enzmictec.2018.08.007. Epub 2018 Aug 30.
The feruloyl esterases Fae125, Fae7262 and Fae68 from Talaromyces wortmannii were screened in 10 different solvent: buffer systems in terms of residual hydrolytic activity and of the ability for the transesterification of vinyl ferulate with prenol or l-arabinose. Among the tested enzymes, the acetyl xylan-related Fae125 belonging to the phylogenetic subfamily 5 showed highest yield and selectivity for both products in alkane: buffer systems (n-hexane or n-octane). Response surface methodology, based on a 5-level and 6-factor central composite design, revealed that the substrate molar ratio and the water content were the most significant variables for the bioconversion yield and selectivity. The effect of agitation, the possibility of DMSO addition and the increase of donor concentration were investigated. After optimization, competitive transesterification yields were obtained for prenyl ferulate (87.5-92.6%) and l-arabinose ferulate (56.2-61.7%) at reduced reaction times (≤24 h) resulting in good productivities (>1 g/L/h, >300 kg product/kg FAE). The enzyme could be recycled for six consecutive cycles retaining 66.6% of the synthetic activity and 100% of the selectivity.
从塔宾曲霉中筛选出的阿魏酸酯酶 Fae125、Fae7262 和 Fae68 在 10 种不同的溶剂:缓冲体系中,根据残留水解活性和烯基阿魏酸与丙烯醇或 L-阿拉伯糖的转酯化能力进行了筛选。在所测试的酶中,属于系统发育亚家族 5 的乙酰木聚糖相关 Fae125 在烷烃:缓冲体系(正己烷或正辛烷)中对两种产物均显示出最高的产率和选择性。基于 5 水平和 6 因子中心组合设计的响应面法表明,底物摩尔比和含水量是生物转化产率和选择性的最显著变量。考察了搅拌、添加 DMSO 的可能性以及供体浓度的增加的影响。经过优化,在减少反应时间(≤24 小时)的情况下,可获得对烯丙基阿魏酸酯(87.5-92.6%)和 L-阿拉伯糖阿魏酸酯(56.2-61.7%)的竞争性转酯化产率,从而获得较高的产物得率(>1 g/L/h,>300 kg 产物/kg FAE)。该酶可连续循环使用六次,保留 66.6%的合成活性和 100%的选择性。