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多糖结构的基因工程:野油菜黄单胞菌中黄原胶变体的产生。

Genetic engineering of polysaccharide structure: production of variants of xanthan gum in Xanthomonas campestris.

作者信息

Hassler R A, Doherty D H

机构信息

Synergen, Inc., Boulder, Colorado 80301.

出版信息

Biotechnol Prog. 1990 May-Jun;6(3):182-7. doi: 10.1021/bp00003a003.

Abstract

Xanthan gum is an extracellular heteropolysaccharide produced by the bacterium Xanthomonas campestris. Xanthan has wide commercial application as a viscosifier of aqueous solutions. Previously, through genetic engineering, a set of mutants defective in the xanthan biosynthetic pathway has been obtained. Certain mutants were shown to synthesize and polymerize structural variants of the xanthan repeating unit and thus produce "variant xanthans". Initial studies of solution viscosities of these polymers, presented here, indicate that the variants have rheological properties similar to, but not identical with, xanthan. These results indicate that acetylation and pyruvylation can affect the viscometric properties of xanthan. Specifically, the presence of pyruvate increases viscosity, whereas acetate decreases viscosity. In addition, the elimination of sugar residues from xanthan side chains also has a major effect on viscosity. Compared to wild-type xanthan, polymer lacking the terminal mannose (polytetramer) is a poor viscosifier. In contrast, polymer lacking both the terminal mannose and glucuronic acid (polytrimer) is a superior viscosifier, on a weight basis. There is a negative effect of acetylation on the viscosity of polytetramer xanthan, but there is seemingly no effect of acetylation on polytrimer xanthan viscosity. The further study of these materials should provide insight into the relationship between xanthan structure and rheological behavior.

摘要

黄原胶是一种由野油菜黄单胞菌产生的细胞外杂多糖。黄原胶作为水溶液的增稠剂有着广泛的商业应用。此前,通过基因工程已获得了一组在黄原胶生物合成途径中存在缺陷的突变体。某些突变体被证明能够合成并聚合黄原胶重复单元的结构变体,从而产生“变体黄原胶”。本文展示的对这些聚合物溶液粘度的初步研究表明,这些变体具有与黄原胶相似但不完全相同的流变学性质。这些结果表明,乙酰化和丙酮酸化会影响黄原胶的粘度特性。具体而言,丙酮酸盐的存在会增加粘度,而醋酸盐会降低粘度。此外,从黄原胶侧链去除糖残基也对粘度有重大影响。与野生型黄原胶相比,缺少末端甘露糖的聚合物(聚四聚体)是一种较差的增稠剂。相反,既缺少末端甘露糖又缺少葡萄糖醛酸的聚合物(聚三聚体),按重量计算是一种更好的增稠剂。乙酰化对聚四聚体黄原胶的粘度有负面影响,但对聚三聚体黄原胶的粘度似乎没有影响。对这些材料的进一步研究应能深入了解黄原胶结构与流变行为之间的关系。

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