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首页> 外文期刊>Applied Microbiology and Biotechnology >Identification of an exo-?-1,3-d-galactanase from Fusarium oxysporum and the synergistic effect with related enzymes on degradation of type II arabinogalactan
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Identification of an exo-?-1,3-d-galactanase from Fusarium oxysporum and the synergistic effect with related enzymes on degradation of type II arabinogalactan

机译:尖孢镰刀菌中-α-1,3-d-半乳糖酶的鉴定及其与相关酶的协同作用对II型阿拉伯半乳聚糖降解的影响

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摘要

An exo-?-1,3-d-galactanase (Fo/1,3Gal) was purified from the culture filtrate of Fusarium oxysporum 12S. A cDNA encoding Fo/1,3Gal was isolated by in vitro cloning. Module sequence analysis revealed a "GH43-6" domain and a "CBM35-galactosidase-like" domain in Fo/1,3Gal. The recombinant enzyme (rFo/1,3Gal) expressed in Pichia pastoris degraded ?-1,3-galactan and ?-1,3-galactobiose (Gal2), and released only galactose (Gal). In contrast, the enzyme did not hydrolyze p-nitrophenyl ?-d- galactopyranoside, ?-1,4-Gal2, or ?-1,6-Gal2. The enzyme also showed low activity towards native type II arabinogalactans such as larchwood arabinogalactan (LWAG) and gum arabic. Using LWAG as substrate, rFo/1,3Gal released Gal, ?-1,6-Gal2, ?-1,6-galactotriose (Gal3), and ?-1,6-Gal3 substituted with a single arabinofuranose residue accompanied with unidentified oligosaccharides, indicating that the enzyme can by-pass the branching points of ?-1,3-galactan backbones. A time course analysis of products released by rFo/1,3Gal on LWAG revealed that ?-1,6-Gal2 is the main side chain in LWAG and that the activity of rFo/1,3Gal was decreased when degrees of polymerization of side chains increase. rFo/1,3Gal worked synergistically with three other recombinant F. oxysporum enzymes (?-1,6-galactanase, ?-l-arabinopyranosidase, and α-l-arabinofuranosidase) that degrade side chains, on the degradation of LWAG. However, the synergism was much lower than anticipated, probably because LWAG have longer side chains than the three enzymes used are able to remove or ?-1,3-galactan main chain is interrupted with glycosidic linkages that are different from the ?-1,3-galactosyl linkage. Affinity gel electrophoresis revealed that rFo/1,3Gal specifically bound to ?-1,3-galactan.
机译:从尖孢镰刀菌12S的培养滤液中纯化出exo-α-1,3-d-半乳糖苷酶(Fo / 1,3Gal)。通过体外克隆分离了编码Fo / 1,3Gal的cDNA。模块序列分析揭示了Fo / 1,3Gal中的“ GH43-6”结构域和“ CBM35-半乳糖苷酶样”结构域。在巴斯德毕赤酵母中表达的重组酶(rFo / 1,3Gal)降解了α-1,3-半乳聚糖和β-1,3-半乳糖二糖(Gal2),仅释放了半乳糖(Gal)。相反,该酶不水解对硝基苯基β-d-吡喃半乳糖苷,β-1,4-Gal2或β-1,6-Gal2。该酶还显示出对天然II型阿拉伯半乳聚糖(如落叶松阿拉伯半乳聚糖(LWAG)和阿拉伯胶)的低活性。使用LWAG作为底物,rFo / 1,3Gal释放了Gal,α-1,6-Gal2,α-1,6-半乳糖三糖(Gal3)和α-1,6-Gal3并被单个阿拉伯呋喃糖残基取代并带有未鉴定的寡糖,表明该酶可以绕过β-1,3-半乳聚糖主链的分支点。对rFo / 1,3Gal在LWAG上释放的产物进行时程分析表明,α-1,6-Gal2是LWAG中的主要侧链,并且当侧链的聚合度降低时,rFo / 1,3Gal的活性降低。增加。 rFo / 1,3Gal与LWAG降解时降解侧链的其他三种重组尖孢镰刀菌酶(β-1,6-半乳糖酶,β-1-阿拉伯吡喃糖苷酶和α-1-阿拉伯呋喃糖苷酶)协同作用。但是,这种协同作用远低于预期,可能是因为LWAG的侧链比所使用的三种酶能够去除的更长,或者L-1AG的半乳糖主链被不同于L-1的糖苷键所中断, 3-半乳糖基键。亲和凝胶电泳显示rFo / 1,3Gal与β-1,3-半乳聚糖特异性结合。

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