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首页> 外文期刊>Acta biochimica Polonica >Characterization of an acidic α-galactosidase from hemp (Cannabis sativa L.) seeds and its application in removal of raffinose family oligosaccharides (RFOs)
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Characterization of an acidic α-galactosidase from hemp (Cannabis sativa L.) seeds and its application in removal of raffinose family oligosaccharides (RFOs)

机译:大麻(大麻)种子中酸性α-半乳糖苷酶的表征及其在棉子糖家族低聚糖(RFOs)去除中的应用

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By means of chromatographic procedures which involved chromatography on the cation-exchangers CM-cellulose and SP-Sepharose, chromatography on the anion-exchangers DEAE-cellulose and Q-Sepharose, and gel filtration on Superdex 75 by fast protein liquid chromatography, an acidic α-galactosidase designated as hemp seed α-galactosidase (HSG) was purified from hemp (Cannabis sativa L.) seeds. Results of SDS-PAGE and gel filtration on FPLC Superdex 75 disclosed that the enzyme was a monomeric protein with a molecular weight of 38 kDa. Sequences of the inner peptides of the α-galactosidase obtained by MALDI-TOF-MS showed that HSG was a novel α-galactosidase since there was little similarity to the majority of α-galactosidases recorded in the literature. A pH of 3.0 and a temperature of 50 ℃ were optimal for the activity of the enzyme. The activity of HSG was inhibited by the chemical modification reagent N-bromosuccinimide (NBS). HSG contained 16 tryptophan residues and two tryptophan residues on the surface, which are crucial to the α-galactosidase activity. The heavy metal ions Cd2+, Cu2+, Hg2+ and Zn2+ ions inhibited its activity. The Km and Vmax for hydrolysis of pNPGal (4-nitrophenyl α-D-galactopyranoside) were respectively 0.008 mM and 68 μM min-1 mg-1. HSG also catalyzed hydrolysis of raffinose and other natural substrates. Hence the α-galactosidase possesses tremendous potential in food and feed industries for elimination of indigestible oligosaccharides from leguminous products.
机译:通过色谱操作,包括在阳离子交换剂CM-纤维素和SP-Sepharose上进行色谱分离,在阴离子交换剂DEAE-纤维素和Q-Sepharose上进行色谱分离,以及在Superdex 75上通过快速蛋白质液相色谱(酸性α)进行凝胶过滤从大麻(Cannabis sativa L.)种子中纯化出命名为大麻种子的α-半乳糖苷酶α-半乳糖苷酶(HSG)。 SDS-PAGE和在FPLC Superdex 75上进行凝胶过滤的结果表明,该酶是分子量为38 kDa的单体蛋白。通过MALDI-TOF-MS获得的α-半乳糖苷酶内部肽序列显示,HSG是一种新型的α-半乳糖苷酶,因为与文献中记载的大多数α-半乳糖苷酶几乎没有相似之处。最适pH为3.0,最适温度为50℃。 HSG的活性被化学修饰剂N-溴琥珀酰亚胺(NBS)抑制。 HSG在表面上包含16个色氨酸残基和2个色氨酸残基,这对α-半乳糖苷酶活性至关重要。重金属离子Cd2 +,Cu2 +,Hg2 +和Zn2 +离子抑制了其活性。水解pNPGal(4-硝基苯基α-D-吡喃半乳糖苷)的Km和Vmax分别为0.008 mM和68μMmin-1 mg-1。 HSG还催化棉子糖和其他天然底物的水解。因此,α-半乳糖苷酶在食品和饲料工业中具有巨大的潜力,可从豆类产品中消除难消化的低聚糖。

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