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首页> 外文期刊>Protein engineering design & selection: PEDS >Biochemical characterization of a novel laccase from the basidiomycete fungus Cerrena sp. WR1
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Biochemical characterization of a novel laccase from the basidiomycete fungus Cerrena sp. WR1

机译:生化特性的新型漆酶从担子菌真菌Cerrena sp。 WR1

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This study reports a new white-rot fungus Cerrena sp. WR1, identified based on an 18S rDNA sequence, which can secrete extracellular forms of laccase with a maximal activity reaching 202 000 U l -1 in a 5-l fermenter. A laccase protein, designated Lcc3, was purified and shown to be N-linked glycosylated by PNGase F and liquid chromatography tandem mass spectrometry analyses. The respective full-length cDNA gene (lcc3) of the Lcc3 protein was obtained using polymerase chain reaction-based methods. Kinetic studies showed that the K m and k cat of the native Lcc3 were 3.27 μM and 934.6 s -1 for 2,2′-Azino-bis-(3-ethylbenzthiazoline-6- sulfonic acid), 849.1 μM and 147.9 s -1 for guaiacol, 392.7 μM and 109.2 s -1 for 2,6-dimethoxyphenol, and 881 μM and 115.5 s -1 for catechol, respectively. The T m of Lcc3 was determined at 73.9°C and it showed a long t 1/2 (120 min) at 50°C. The laccase was highly ethanol resistant, with 80 of its original activity was detected when incubated in 25 ethanol for 14 days. Furthermore, crude enzyme broth or Lcc3 could degrade lignin in kraft paper (26.5), and showed high decoloration efficiency (90) on synthetic dye Remazol Brilliant Blue R. Together, these data demonstrate that Cerrena sp. WR1 Lcc3 possesses novel biochemical and kinetic properties that may aid its application in industry.
机译:这项研究报告了一种新的白腐真菌Cerrena sp.。基于18S rDNA序列鉴定的WR1,可以分泌细胞外形式的漆酶,其最大活性在5升发酵罐中达到202 000 U -1。纯化了漆酶蛋白,命名为Lcc3,并通过PNGase F和液相色谱串联质谱分析显示为N-连接的糖基化。 Lcc3蛋白的各个全长cDNA基因(lcc3)是使用基于聚合酶链反应的方法获得的。动力学研究表明,天然Lcc3的K m和k cat对于2,2'-叠氮基双-(3-乙基苯并噻唑啉-6-磺酸),849.1μM和147.9 s -1分别为3.27μM和934.6 s -1对于愈创木酚而言,对于2,6-二甲氧基苯酚而言,分别为392.7μM和109.2 s -1,对儿茶酚分别为881μM和115.5 s -1。 Lcc3的T m在73.9°C下测定,在50°C下显示出较长的t 1/2(120分钟)。该漆酶具有高度的乙醇抗性,当在25种乙醇中孵育14天时,可检测到其原始活性的80%。此外,粗酶发酵液或Lcc3可以降解牛皮纸中的木质素(26.5),并且对合成染料Remazol Brilliant Blue R表现出较高的脱色效率(90)。这些数据共同表明Cerrena sp。 WR1 Lcc3具有新颖的生化和动力学特性,可能有助于其在工业中的应用。

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