Singh Gursharan, Singh Sukhpal, Kaur Kavleen, Kumar Arya Shailendra, Sharma Prince
Biotechnology Branch, UIET, Panjab University.
Department of Microbiology, Panjab University.
J Gen Appl Microbiol. 2019 Mar 8;65(1):26-33. doi: 10.2323/jgam.2018.04.002. Epub 2018 Jun 28.
Laccases are unable to oxidize the non-phenolic components of complex lignin polymer due to their less redox potential (E0). Catalytic efficiency of laccases relies on the mediators that potentiates their oxidative strength; for breaking the recalcitrant lignin. Laccase from Bacillus sp. SS4 was evaluated for its compatibility with natural and synthetic mediators. (2 mM). It was found that acetosyringone, vanillin, orcinol and veratraldehyde have no adverse effect on the laccase activity up to 3 h. Syringaldehyde, p-coumaric acid, ferulic acid and hydroquinone reduced the enzyme activity ≥50% after 1.0 h, but laccase activity remained 100 to ~120% in the presence of synthetic mediators HBT (1-Hydroxylbenzotrizole) and ABTS. (2,2'-azino-bis (3-ethylbenzothiazoline-6-sulphonic acid) after 3 h. MgSO and MnSO (40 mM) increased the enzyme activity 3.5 fold and the enzyme possessed ≥70% activity at a very high concentration. (2 M) of NaCl. The enzyme retained 40-110% activity in the presence of 10% DMSO (dimethylsulfoxide), acetone, methanol and ethyl acetate. On the other hand, CuSO (100 μM) induced the laccase production 8.5 fold without increasing the growth of bacterial cells. Laccase from SS4 appropriately decolorized the indigo carmine (50 μM) completely in the presence of acetosyringone (100 μM) within 10 min and 25% decolorization was observed after 4 h without any mediator.
由于漆酶的氧化还原电位(E0)较低,它们无法氧化复杂木质素聚合物的非酚类成分。漆酶的催化效率依赖于增强其氧化强度的介质,以分解顽固的木质素。对来自芽孢杆菌属SS4的漆酶与天然和合成介质的兼容性进行了评估(2 mM)。结果发现,在长达3小时的时间内,乙酰丁香酮、香草醛、邻苯二酚和藜芦醛对漆酶活性没有不利影响。丁香醛、对香豆酸、阿魏酸和对苯二酚在1.0小时后使酶活性降低≥50%,但在合成介质HBT(1-羟基苯并三唑)和ABTS(2,2'-联氮-双-(3-乙基苯并噻唑啉-6-磺酸))存在下3小时后,漆酶活性仍保持在100%至~120%。MgSO4和MnSO4(40 mM)使酶活性提高了3.5倍,并且在非常高的NaCl浓度(2 M)下该酶仍具有≥70%的活性。在10%二甲基亚砜(DMSO)、丙酮、甲醇和乙酸乙酯存在下,该酶保留了40 - 110%的活性。另一方面,CuSO4(100 μM)在不增加细菌细胞生长的情况下使漆酶产量提高了8.5倍。来自SS4的漆酶在乙酰丁香酮(100 μM)存在下能在10分钟内将靛蓝胭脂红(50 μM)完全脱色,在没有任何介质的情况下4小时后观察到25%的脱色。