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奇异长喙壳菌产生的半纤维素酶I的纯化、性质及作用方式

Purification, properties, and mode of action of hemicellulase I produced by Ceratocystis paradoxa.

作者信息

Dekker R F, Richards G N

出版信息

Carbohydr Res. 1975 Jan;39(1):97-114. doi: 10.1016/s0008-6215(00)82642-7.

Abstract

A culture isolate (CP2) of the fungal plant pathogen Ceratocystis paradoxa produces at least five extra-cellular hemicellulases when grown on a medium containing a commercial hemicellulose as inducer. One of the five enzymes, hemicellulase I (HC-I), was purified by ammonium sulphate preceipitation, ion-exchange chromatography (DEAE-Sephadex and then Cellex-CM), and iso-electric focusing at pH 3-10 and 8-10. HC-I behaves as a single protein on a electrophoresis at pH 6.0 and 8.4. The enzyme degrades hemicellulose B (an arabino-4-O-methylglucurono-xylan) and arabinoxylanto arabinose, xylose, xylobiose (Xyl2; beta-D-Xylp-(1 leads to 4)-D-Xyl), and a mixture of arabinose-xylose and xylose oligosaccharides (AraXyln and Xyln, where n=3, 4, or 5). The enzyme is deduced to be an endo-enzyme. Xylotetraose (Xyl4) was the lowest homologue of the xylose oligosaccharides attacked, yielding xylobiose and xylotriose (Xyl3) only. A mechanism is postulated for this reaction. AraXyl5 were slowly hydrolysed to arabinose and the respective xylose saccharide (Xyl2-Xyl5), and thence to Xyl2 and Xyl3. Hydrolysis of the arabinofuranosyl linkage probably does not occur at the same active site as for the xylose oligosaccharides. Hemicellulose B fractions from different sources appeared to be degraded by HC-I. The enzyme showed optimum activity at pH 5.5 and 40 degrees, and Km was 4.24 mg of hemicellulose/ml.

摘要

真菌植物病原菌奇异长喙壳菌(Ceratocystis paradoxa)的一个培养分离株(CP2)在以商业半纤维素作为诱导剂的培养基上生长时,可产生至少五种胞外半纤维素酶。这五种酶中的一种,即半纤维素酶I(HC-I),通过硫酸铵沉淀、离子交换色谱法(DEAE-葡聚糖凝胶,然后是Cellex-CM)以及在pH 3 - 10和8 - 10条件下的等电聚焦进行纯化。HC-I在pH 6.0和8.4的电泳中表现为单一蛋白质。该酶可将半纤维素B(一种阿拉伯糖基-4-O-甲基葡萄糖醛酸木聚糖)和阿拉伯木聚糖降解为阿拉伯糖、木糖、木二糖(Xyl2;β-D-木糖基-(1→4)-D-木糖),以及阿拉伯糖-木糖和木糖寡糖的混合物(AraXyln和Xyln,其中n = 3、4或5)。该酶被推断为一种内切酶。木四糖(Xyl4)是被攻击的木糖寡糖中最小的同系物,仅产生木二糖和木三糖(Xyl3)。为此反应假定了一种机制。AraXyl5被缓慢水解为阿拉伯糖和相应的木糖糖类(Xyl2 - Xyl5),进而水解为Xyl2和Xyl3。阿拉伯呋喃糖基键的水解可能与木糖寡糖的水解不在同一活性位点发生。来自不同来源的半纤维素B组分似乎都能被HC-I降解。该酶在pH 5.5和40℃时表现出最佳活性,Km为4.24 mg半纤维素/ml。

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