Chemical Biology Laboratory, Medicinal Chemistry and Pharmacology Division, CSIR-Indian Institute of Chemical Technology, Hyderabad, Andhra Pradesh, 500007, India.
Biotechnol Prog. 2013 Jul-Aug;29(4):924-32. doi: 10.1002/btpr.1729. Epub 2013 Apr 22.
Aspergillus terreus MTCC 11096 isolated from the soils of agricultural fields cultivating sweet sorghum was previously identified to produce feruloyl esterases (FAEs). The enzymes responsible for feruloyl esterase activity were purified to homogeneity and named as AtFAE-1, AtFAE-2, and AtFAE-3. The enzymes were monomeric having molecular masses of 74, 23 and 36 kDa, respectively. Active protein bands were identified by a developed pH-dependent zymogram on native PAGE. The three enzymes exhibited variation in pH tolerance ranging between pH 5-8 and thermostability of up to 55°C. Inhibition studies revealed that the serine residue was essential for feruloyl esterase activity; moreover aspartyl and glutamyl residues are not totally involved at the active site. Metal ions such as Ca(2+), K(+), and Mg(2+) stabilized the enzyme activity for all three FAEs. Kinetic data indicated that all three enzymes showed catalytic efficiencies (k(cat) /K(m)) against different synthesized alkyl and aryl esters indicating their broad substrate specificity. The peptide mass fingerprinting by MALDI/TOF-MS analysis and enzyme affinity toward methoxy and hydroxy substituents on the benzene ring revealed that the AtFAE-1 belonged to type A while AtFAE-2 and AtFAE-3 were type C FAE. The FAEs could release 65 to 90% of ferulic acid from agrowaste substrates in the presence of xylanase.
从农业甜高粱种植土壤中分离到的曲霉属土曲霉 MTCC 11096 先前被鉴定为产生阿魏酸酯酶 (FAE)。负责产生阿魏酸酯酶活性的酶被纯化为均相,并分别命名为 AtFAE-1、AtFAE-2 和 AtFAE-3。这些酶都是单体,分子量分别为 74、23 和 36 kDa。通过在天然 PAGE 上开发的依赖 pH 的同工酶,鉴定了活性蛋白带。三种酶在 pH 耐受范围(5-8)和热稳定性(高达 55°C)方面存在差异。抑制研究表明丝氨酸残基对阿魏酸酯酶活性至关重要;此外,天冬氨酸和谷氨酸残基在活性部位不完全参与。Ca(2+)、K(+)和 Mg(2+)等金属离子稳定了所有三种 FAE 的酶活性。动力学数据表明,所有三种酶对不同合成的烷基和芳基酯均表现出催化效率 (k(cat) /K(m)),表明其具有广泛的底物特异性。通过 MALDI/TOF-MS 分析的肽质量指纹图谱和酶对苯环上甲氧基和羟基取代基的亲和力表明,AtFAE-1 属于 A 型,而 AtFAE-2 和 AtFAE-3 属于 C 型 FAE。在木聚糖酶存在的情况下,FAE 可以从农业废弃物底物中释放出 65%至 90%的阿魏酸。