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首页> 外文期刊>Enzyme and Microbial Technology >Identification and characterization of ferulic acid esterase from Penicillium chrysogenum 31B: de-esterification of ferulic acid decorated with L-arabinofuranoses and D-galactopyranoses in sugar beet pectin
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Identification and characterization of ferulic acid esterase from Penicillium chrysogenum 31B: de-esterification of ferulic acid decorated with L-arabinofuranoses and D-galactopyranoses in sugar beet pectin

机译:青霉玉米菌中甲酸甲酯酶的鉴定与表征,用L-阿拉伯呋喃和糖甲酸果胶植物装饰的阿魏酸酯的脱盐

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摘要

We previously described the fungus Penicillium chrysogenum 31B, which has high performance to produce the ferulic acid esterase (FAE) for de-esterifying ferulic acids (FAs) from sugar beet pulp. However, the characteristics of this fungus have not yet been determined. Therefore, in this study, we evaluated the molecular characteristics and natural substrate specificity of the Pcfae1 gene from Penicillium chrysogenum and examined its synergistic effects on sugar beet pectin. The Pcfae1 gene was cloned and overexpressed in Pichia pastoris KM71H, and the recombinant enzyme, named PcFAE1, was characterized. The 505 amino acids of PcFAE1 possessed a GCSTG motif (Gly164 to Gly168), characteristic of the serine esterase family. By comparing the amino acid sequence of PcFAE1 with that of the FAE (AoFaeB) of Aspergillus oryzae, Ser166, Asp379, and His419 were identified as the catalytic triad. PcFAE1 was purified through two steps using anion-exchange column chromatography. Its molecular mass without the signal peptide was 75 kDa. Maximum PcFAE1 activity was achieved at pH 6.0-7.0 and 50 degrees C. The enzyme was stable up to 37 degrees C and at a pH range of 3-8. PcFAE1 activity was only inhibited by Hg2+, and the enzyme had activity toward methyl FA, methyl caffeic acid, and methyl p-coumaric acid, with specific activities of 6.97, 4.65, and 9.32 U/mg, respectively, but not on methyl sinapinic acid. These results indicated that PcFAE1 acted similar to FaeB type according the Crepin classification. PcFAE1 de-esterified O-[6-O-feruloyl-beta-D-galactopyranosyl-(1 -> 4)]-D-galactopyranose, O-[2-O-feruloyl-alpha-L- arabinofuranosyl-(1 -> 5)]-L-arabinofuranose, and O-[5-O-feruloyl-alpha-L-arabinofuranosyl-(1 -> 3)]-O-beta-D-xylopyranosyl- (1 -> 4)-D-xylopyranose, indicating that the enzyme could de-esterify FAs decorated with both beta-D-galactopyranosidic and alpha-L-arabinofuranosidic residues in pectin and xylan. PcFAE1 acted in synergy with endo-alpha-1,5-arabinanase and alpha-L-arabinofuranosidase, which releases FA linked to arabinan, to digest the sugar beet pectin. Moreover, when PcFAE1 was allowed to act on sugar beet pectin together with Driselase, approximately 90% of total FA in the substrate was released. Therefore, PcFAE1 may be an interesting candidate for hydrolysis of lignocellulosic materials and could have applications as a tool for production of FA from natural substrates.
机译:我们以前描述了真菌青霉素瘤31b,其具有高性能,从而为来自甜菜纸浆的脱酯化的阿魏酸酯(FAS)产生高性能。然而,尚未确定这种真菌的特征。因此,在本研究中,我们评估了来自青霉植物原子的PCFAE1基因的分子特征和天然底物特异性,并检查了对甜菜果胶的协同作用。克隆PCFAE1基因并在Pichia Pastoris km71h中过表达,并表征了名为pcfae1的重组酶。 PCFAE1的505氨基酸具有GCSTG基序(GLY164至GLY168),丝氨酸酯酶家族的特征。通过将PCFA​​E1的氨基酸序列与Aspergillus oryzae,Ser166,Asp379和His419的Fae(Aofaeb)的氨基酸序列进行了鉴定为催化性三合会。通过使用阴离子交换柱色谱法通过两个步骤纯化PCFAE1。没有信号肽的分子量为75kDa。在pH6.0-7.0和50℃下实现最大PCFAE1活性。酶稳定至37℃,在3-8的pH范围内。仅通过HG2 +抑制PCFAE1活性,酶分别对甲基FA,甲基咖啡酸和甲基香豆酸的活性分别具有6.97,4.65和9.32 U / mg的特异性活性,但不含甲基SINAPINIC酸。这些结果表明,根据Crepin分类,PCFAe1的作用类似于FaeB类型。 PCFAE1去酯化O- [6-O-Ferulya-β-D-半乳糖基 - (1 - > 4)] - D-半乳糖烷烃,O- [2-O-Feruloyl-α-L-阿拉伯呋喃糖基 - (1 - > 5)] - L-阿拉伯呋喃,和O- [5-O-Ferulyl-α-L-阿拉伯呋喃糖基 - (1 - > 3)] - O-Beta-D-木嘧啶基 - (1 - > 4)-D-二甲苯吡喃糖苷酶,表明酶可以在果胶和木聚糖中用β-D-半乳糖酸酯和α-L-阿拉伯呋喃酸残基装饰的酯化Fas。 PCFAE1用Endo-α-1,5-阿拉伯酶和α-L-阿拉伯呋喃硫脲酶的协同作用,释放与阿拉伯人相关的Fa,以消化糖甜菜果胶。此外,当允许PCFAE1与纱菌酶一起作用在甜菜果胶上时,释放底物中的约90%的总法。因此,PCFAE1可以是用于水解木质纤维素材料的有趣候选者,并且可以将应用作为从天然基质生产FA的工具。

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