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两株土曲霉β-木聚糖酶的特性及其对木聚糖酶活性的酚类化合物的影响。

Two β-xylanases from Aspergillus terreus: characterization and influence of phenolic compounds on xylanase activity.

机构信息

Laboratory of Enzymology, Department of Cellular Biology, University of Brasilia, Brasilia, DF CEP 70910-900, Brazil.

出版信息

Fungal Genet Biol. 2013 Nov;60:46-52. doi: 10.1016/j.fgb.2013.07.006. Epub 2013 Jul 25.

DOI:10.1016/j.fgb.2013.07.006
PMID:23892064
Abstract

Sugarcane bagasse was used as an inexpensive alternative carbon source for production of β-xylanases from Aspergillus terreus. The induction profile showed that the xylanase activity was detected from the 6th day of cultivation period. Two low molecular weight enzymes, named Xyl T1 and Xyl T2 were purified to apparent homogeneity by ultrafiltration, gel filtration and ion exchange chromatographies and presented molecular masses of 24.3and 23.60 kDa, as determined by SDS-PAGE, respectively. Xyl T1 showed highest activity at 50 °C and pH 6.0, while Xyl T2 was most active at 45 °C and pH 5.0. Mass spectrometry analysis of trypsin digested Xyl T1 and Xyl T2 showed two different fingerprinting spectra, indicating that they are distinct enzymes. Both enzymes were specific for xylan as substrate. Xyl T1 was inhibited in greater or lesser degree by phenolic compounds, while Xyl T2 was very resistant to the inhibitory effect of all phenolic compounds tested. The apparent km values of Xyl T2, using birchwood xylan as substrate, decreased in the presence of six phenolic compounds. Both enzymes were inhibited by N-bromosuccinimide and Hg(2+) and activated by Mn(2+). Incubation of Xyl T1 and Xyl T2 with L-cysteine increased their half-lives up to 14 and 24 h at 50 °C, respectively. Atomic force microscopy showed a bimodal size distribution of globular particles for both enzymes, indicating that Xyl T1 is larger than Xyl T2.

摘要

甘蔗渣被用作一种廉价的替代碳源,用于生产土曲霉β-木聚糖酶。诱导谱表明,木聚糖酶活性在培养期的第 6 天被检测到。两种低分子量的酶,分别命名为 Xyl T1 和 Xyl T2,通过超滤、凝胶过滤和离子交换层析纯化至明显的均一性,SDS-PAGE 分别确定它们的分子量为 24.3 和 23.60 kDa。Xyl T1 在 50°C 和 pH 6.0 时表现出最高的活性,而 Xyl T2 在 45°C 和 pH 5.0 时最活跃。胰蛋白酶消化的 Xyl T1 和 Xyl T2 的质谱分析显示出两种不同的指纹图谱,表明它们是不同的酶。两种酶都对木聚糖作为底物具有特异性。Xyl T1 或多或少地被酚类化合物抑制,而 Xyl T2 对所有测试的酚类化合物的抑制作用都非常耐受。Xyl T2 以桦木木聚糖为底物时,表观 km 值在存在六种酚类化合物的情况下降低。两种酶都被 N-溴代丁二酰亚胺和 Hg(2+)抑制,被 Mn(2+)激活。Xyl T1 和 Xyl T2 与 L-半胱氨酸孵育可将其半衰期分别提高至 50°C 下的 14 和 24 小时。原子力显微镜显示两种酶的球形颗粒均呈现双峰尺寸分布,表明 Xyl T1 大于 Xyl T2。

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