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担子菌香菇 1566 中的漆酶同工酶多样性:苯丙烷类聚合的潜力。

Laccase isoform diversity in basidiomycete Lentinus strigosus 1566: Potential for phenylpropanoid polymerization.

机构信息

G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms of Russian Academy of Sciences (IBPM RAS), PSCBR RAS, Prospekt Nauki 5, Pushchino, Moscow Region 142290, Russia.

G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms of Russian Academy of Sciences (IBPM RAS), PSCBR RAS, Prospekt Nauki 5, Pushchino, Moscow Region 142290, Russia.

出版信息

Int J Biol Macromol. 2019 Sep 15;137:1199-1210. doi: 10.1016/j.ijbiomac.2019.07.056. Epub 2019 Jul 8.

Abstract

Three laccase isoforms with different physicochemical properties could be purified from culture liquid of basidiomycete Lentinus strigosus 1566 obtained during submerged cultivation. The purified laccases possessed individual selectivity in relation to different phenolic compounds. Laccases I, II, and III (59, 65, and 61 kDa respectively) were more active in acidic conditions at around 70 °C. However, in contrast to laccases I and II, laccase III retained its activity (8-30%) and stability during at least one week of incubation at neutral conditions that allows its biotechnological application carried out at neutral environment. The activation phenomena for some of the purified laccases from L. strigosus 1566 during incubation at high temperature, different pH, and sulfates is shown and discussed. According to MALDI-TOF analysis, laccases I and II are most closely related to the laccase of Panus rudis (AAR13230). Transformation of phenylpropanoids by the predominant laccases of L. strigosus 1566 to different polymers was demonstrated, indicating a great potential for producing novel pharmaceutical valuable analogues of lignans, stilbenes, flavonoids, and etc.. The studied laccases, which are products of the same strain, can become a convenient model for further studies of the structural mechanisms of the shift of T-/pH-optima, activation, and T-/pH-stability.

摘要

从液体深层发酵获得的担子菌糙皮侧耳 1566 中可分离得到 3 种具有不同理化性质的漆酶同工酶。纯化的漆酶对不同酚类化合物具有个体选择性。漆酶 I、II 和 III(分别为 59、65 和 61 kDa)在约 70°C 的酸性条件下更具活性。然而,与漆酶 I 和 II 不同,漆酶 III 在中性条件下孵育至少一周时保持其活性(8-30%)和稳定性,这使其能够在中性环境中进行生物技术应用。展示并讨论了糙皮侧耳 1566 中一些纯化漆酶在高温、不同 pH 值和硫酸盐孵育时的激活现象。根据 MALDI-TOF 分析,漆酶 I 和 II 与粗毛栓菌的漆酶(AAR13230)最为密切相关。研究表明,糙皮侧耳 1566 的主要漆酶可以将苯丙素转化为不同的聚合物,这表明其具有产生新型药物有价值的木脂素、芪类、类黄酮等类似物的巨大潜力。这些研究的漆酶是同一菌株的产物,可成为进一步研究 T-/pH-最佳值转移、激活和 T-/pH-稳定性的结构机制的便利模型。

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