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一种来自松口蘑的具有广泛底物特异性且对棉子糖家族寡糖具有良好水解活性的真菌α-半乳糖苷酶。

A Fungal α-Galactosidase from Tricholoma matsutake with Broad Substrate Specificity and Good Hydrolytic Activity on Raffinose Family Oligosaccharides.

作者信息

Geng Xueran, Tian Guoting, Zhao Yongchang, Zhao Liyan, Wang Hexiang, Ng Tzi Bun

机构信息

State Key Laboratory for Agrobiotechnology, Department of Microbiology, China Agricultural University, Beijing 100193, China.

Institute of Biotechnology and Germplasmic Resource, Yunnan Academy of Agricultural Science, Kunming 650223, China.

出版信息

Molecules. 2015 Jul 24;20(8):13550-62. doi: 10.3390/molecules200813550.

Abstract

An acidic α-galactosidase designated as TMG was purified from the fruiting bodies The purification protocol entailed ion exchange chromatography on Q-Sepharose and of Tricholoma matsutake with 136-fold purification and a specific activity of 909 units/mg. Mono-Q and fast protein liquid chromatography on Superdex 75. TMG is a monomeric protein exhibiting a molecular mass of 47 kDa in SDS-PAGE and gel filtration. The purified enzyme was identified by LC-MS/MS and three inner amino acid sequences were obtained. The optimum pH and temperature for TMG with pNPGal as substrate were pH 4.5 and 55 °C, respectively. The α-galactosidase activity was strongly inhibited by K+, Ca2+, Cd2+, Hg2+, Ag+ and Zn2+ ions. The enzyme activity was inhibited by the chemical modification agent N-bromosuccinimide (NBS), indicating the importance of tryptophan residue(s) at or near the active site. Besides hydrolyzing pNPGal, TMG also efficaciously catalyzed the degradation of natural substrates such as stachyose, raffinose, and melibiose. Thus TMG can be exploited commercially for improving the nutritional value of soy milk by degradation of indigestible oligosaccharides.

摘要

从松口蘑子实体中纯化出一种名为TMG的酸性α-半乳糖苷酶。纯化方案包括在Q-Sepharose上进行离子交换色谱以及在Mono-Q和Superdex 75上进行快速蛋白质液相色谱,纯化倍数达136倍,比活性为909单位/毫克。TMG是一种单体蛋白,在SDS-PAGE和凝胶过滤中显示分子量为47 kDa。通过LC-MS/MS鉴定了纯化的酶,并获得了三个内部氨基酸序列。以pNPGal为底物时,TMG的最适pH和温度分别为4.5和55°C。α-半乳糖苷酶活性受到K+、Ca2+、Cd2+、Hg2+、Ag+和Zn2+离子的强烈抑制。该酶活性受到化学修饰剂N-溴代琥珀酰亚胺(NBS)的抑制,表明活性位点或其附近色氨酸残基的重要性。除了水解pNPGal外,TMG还能有效催化降解诸如水苏糖、棉子糖和蜜二糖等天然底物。因此,TMG可用于商业开发,通过降解难消化的寡糖来提高豆浆的营养价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/932a/6332393/4994d0a6da65/molecules-20-13550-g001.jpg

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