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首页> 外文期刊>Archives of Biochemistry and Biophysics >Unsaturated glucuronyl hydrolase of Bacillus sp. GL1: novel enzyme prerequisite for metabolism of unsaturated oligosaccharides produced by polysaccharide lyases.
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Unsaturated glucuronyl hydrolase of Bacillus sp. GL1: novel enzyme prerequisite for metabolism of unsaturated oligosaccharides produced by polysaccharide lyases.

机译:芽孢杆菌的不饱和葡糖醛酸水解酶。 GL1:由多糖裂解酶产生的不饱和低聚糖代谢的新型酶前提条件。

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摘要

The bacterium Bacillus sp. GL1 assimilates two kinds of heteropolysaccharides, gellan and xanthan, by using extracellular gellan and xanthan lyases, respectively, and produces unsaturated saccharides as the first degradation products. A novel unsaturated glucuronyl hydrolase (glycuronidase), which was induced in the bacterial cells grown on either gellan or xanthan, was found to act on the tetrasaccharide of unsaturated glucuronyl-glucosyl-rhamnosyl-glucose produced from gellan by gellan lyase, and the enzyme and its gene were isolated from gellan-grown cells. The nucleotide sequence showed that the gene contained an ORF consisting of 1131 base pairs coding a polypeptide with a molecular weight of 42,859. The purified enzyme was a monomer with a molecular mass of 42 kDa and was most active at pH 6.0 and 45 degrees C. Because the enzyme can act not only on the gellan-degrading product by gellan lyase, but also on unsaturated chondroitin and hyaluronate disaccharides produced by chondroitin and hyaluronate lyases, respectively, it is considered that the unsaturated glucuronyl hydrolase plays specific and ubiquitous roles in the degradation of oligosaccharides with unsaturated uronic acid at the nonreducing terminal produced by polysaccharide lyases. Copyright 1999 Academic Press.
机译:细菌芽孢杆菌GL1通过分别使用胞外结冷胶和黄原胶裂解酶来同化两种杂多糖,结冷胶和黄原胶,并产生不饱和糖作为第一降解产物。发现在结冷胶或黄原胶上生长的细菌细胞中诱导的新型不饱和葡糖醛酸水解酶(葡糖醛酸糖苷酶)对由结冷胶裂解酶由结冷蛋白产生的不饱和葡糖醛酸-葡萄糖基-鼠李糖基-葡萄糖的四糖起作用,该酶和它的基因是从结冷生长的细胞中分离出来的。核苷酸序列显示该基因包含由1131个碱基对组成的ORF,该ORF编码分子量为42859的多肽。纯化的酶是分子量为42 kDa的单体,并且在pH 6.0和45摄氏度下最具活性。因为该酶不仅可以作用于结冷聚糖裂解酶降解的结冷多糖,而且还可以作用于不饱和软骨素和透明质酸二糖分别由软骨素和透明质酸裂解酶产生的糖,认为不饱和葡糖醛酸水解酶在多糖裂解酶产生的非还原性末端在具有不饱和糖醛酸的寡糖的降解中起特定和普遍的作用。版权所有1999,学术出版社。

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