Pierce Brian C, Agger Jane Wittrup, Wichmann Jesper, Meyer Anne S
DuPont™ Nutrition Biosciences ApS, Edwin Rahrs Vej 38, Brabrand, 8220, Denmark; Department of Chemical and Biochemical Engineering, Center for Bioprocess Engineering, Technical University of Denmark, Søltofts Plads, Building 229, Kgs. Lyngby 2800, Denmark.
Department of Chemical and Biochemical Engineering, Center for Bioprocess Engineering, Technical University of Denmark, Søltofts Plads, Building 229, Kgs. Lyngby 2800, Denmark.
Enzyme Microb Technol. 2017 Mar;98:58-66. doi: 10.1016/j.enzmictec.2016.12.007. Epub 2016 Dec 29.
The auxiliary activity family 9 (AA9) copper-dependent lytic polysaccharide monooxygenase (LPMO) from Trichoderma reesei (EG4; TrCel61A) was investigated for its ability to oxidize the complex polysaccharides from soybean. The substrate specificity of the enzyme was assessed against a variety of substrates, including both soy spent flake, a by-product of the soy food industry, and soy spent flake pretreated with sodium hydroxide. Products from enzymatic treatments were analyzed using mass spectrometry and high performance anion exchange chromatography. We demonstrate that TrCel61A is capable of oxidizing cellulose from both pretreated soy spent flake and phosphoric acid swollen cellulose, oxidizing at both the C1 and C4 positions. In addition, we show that the oxidative activity of TrCel61A displays a synergistic effect capable of boosting endoglucanase activity, and thereby substrate depolymerization of soy cellulose, by 27%.
对里氏木霉的辅助活性家族9(AA9)铜依赖性裂解多糖单加氧酶(LPMO)(EG4;TrCel61A)氧化大豆复合多糖的能力进行了研究。针对多种底物评估了该酶的底物特异性,这些底物包括大豆食品工业的副产品大豆粕以及用氢氧化钠预处理过的大豆粕。使用质谱和高效阴离子交换色谱法分析了酶处理的产物。我们证明TrCel61A能够氧化预处理过的大豆粕和磷酸膨胀纤维素中的纤维素,在C1和C4位置均发生氧化。此外,我们表明TrCel61A的氧化活性显示出协同效应,能够将内切葡聚糖酶活性提高27%,从而促进大豆纤维素的底物解聚。