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来自产结冷胶的鞘氨醇单胞菌属的多糖裂解酶

Polysaccharide lyases from gellan-producing Sphingomonas spp.

作者信息

Kennedy Lynn, Sutherland Ian W

机构信息

Institute of Cell and Molecular Biology, Edinburgh University, Mayfield Road, Edinburgh EH9 3JH, UK.

出版信息

Microbiology (Reading). 1996 Apr;142 ( Pt 4):867-872. doi: 10.1099/00221287-142-4-867.

Abstract

A number of Sphingomonas strains capable of synthesizing the bacterial exopolysaccharide gellan and related polymers were shown to possess constitutive gellanase activity. In each case, the degradation of deacylated gellan was due to extracellular, eliminase-type enzymes (lyases) which cleave the sequence ... beta-D-glucosyl 1,4-beta-D-glucuronosyl ... in the tetrasaccharide repeat unit of the substrate polysaccharides. Deacetylated rhamsan was an alternative substrate but there was little or no action against most other polysaccharides with similar structures. Slight differences were found between the specificities of the lyases from different strains. Activities of gellan lyase preparations were generally low. As well as the extracellular 'gellanase' activity, all the bacteria possessed varying amounts of beta-D-glucosidase and beta-D-glucuronidase activities apparently located in the periplasm. The products from deacylated gellan and the chemically deacylated form of polysaccharide S194 (rhamsan gum), which is effectively a gentiobiosylated form of gellan, closely resembled those recently obtained by the authors from other, gellan-degrading, non-gellan-producing bacteria. The enzymes had negligible activity against the natural, acylated gellan and rhamsan polysaccharides from bacteria now designated as strains of Sphingomonas.

摘要

已证明许多能够合成细菌胞外多糖结冷胶及相关聚合物的鞘氨醇单胞菌菌株具有组成型结冷胶酶活性。在每种情况下,脱酰基结冷胶的降解是由胞外消除酶型酶(裂解酶)引起的,这些酶可切割底物多糖四糖重复单元中的……β-D-葡糖基1,4-β-D-葡糖醛酸基……序列。脱乙酰化的鼠李糖胶是一种替代底物,但对大多数其他具有相似结构的多糖几乎没有作用。发现不同菌株的裂解酶特异性之间存在细微差异。结冷胶裂解酶制剂的活性通常较低。除了胞外“结冷胶酶”活性外,所有细菌都具有不同量的β-D-葡萄糖苷酶和β-D-葡萄糖醛酸苷酶活性,这些活性显然位于周质中。脱酰基结冷胶和多糖S194(鼠李糖胶)的化学脱酰基形式(实际上是结冷胶的龙胆二糖基化形式)的产物与作者最近从其他降解结冷胶但不产生结冷胶的细菌中获得的产物非常相似。这些酶对现在被指定为鞘氨醇单胞菌菌株的细菌产生的天然酰化结冷胶和鼠李糖胶多糖的活性可忽略不计。

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