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来自加勒比伯克霍尔德氏菌MWAP71菌株的胞外多糖的构象分析:对其与土壤相互作用的影响

Conformational analysis of the exopolysaccharide from Burkholderia caribensis strain MWAP71: impact on the interaction with soils.

作者信息

Vanhaverbeke Cécile, Heyraud Alain, Mazeau Karim

机构信息

Centre de Recherches sur les Macromolécules Végétales, CNRS and Université Joseph Fourier, B.P.53, F-38041 Grenoble, France.

出版信息

Biopolymers. 2003 Aug;69(4):480-97. doi: 10.1002/bip.10432.

Abstract

The strain MWAP71 of Burkholderia caribensis produces a branched charged exopolysaccharide (EPS) that is responsible for soil aggregation. Understanding the conformational properties of the isolated polysaccharide is a prerequisite for proper investigation of the interactions between the polysaccharide and the soil at the atomic level. The aim of this study is first to have an overall view of the flexibility of the backbone and then to ascertain the role played by side groups in the conformational properties of the main chain. Conformational analysis of each oligomeric segment of the polysaccharide has been performed by means of adiabatic mapping of the backbone glycosidic torsion angles using the MM3(92) force field. Substitution by an acetyl group or by a Kdo unit has only a slight effect on the potential energy surfaces of the fragment model compounds. Calculated partition functions, however, indicate that the overall flexibility is slightly larger for the substituted oligomers than for the unsubstituted ones. Prediction of selected average interproton distances from the AB and BC potential energy surfaces allows comparison between modeling results and NMR measurements performed on the ABC fragment. Agreement between the experimental and the predicted data suggests that the established surfaces correctly reflect the observed conformational behavior of such fragments and validate the modeling protocol. The above results have been extended to regular and disordered long polymer chains, differing in Kdo content. It is found that Kdo affects the helical conformations of the polysaccharide. The number of stable helices is considerably larger with Kdo than without Kdo. On the contrary, Kdo has only a moderate effect on unperturbed disordered conformations of the polysaccharide. Predicted persistence length of 70 A suggests that the polymer is semirigid with moderate extension. A further validation of the modeling results is obtained by the good concordance between this predicted value and the experimental one of 95 A, measured from light scattering and viscosity experiments. The results lead to an understanding of the interactions of this polysaccharide with soils.

摘要

加勒比伯克霍尔德氏菌菌株MWAP71产生一种带支链的带电胞外多糖(EPS),该多糖负责土壤团聚。了解分离出的多糖的构象性质是在原子水平上正确研究多糖与土壤之间相互作用的前提。本研究的目的首先是全面了解主链的柔韧性,然后确定侧基在主链构象性质中所起的作用。通过使用MM3(92)力场对主链糖苷扭转角进行绝热映射,对多糖的每个寡聚片段进行了构象分析。用乙酰基或Kdo单元取代对片段模型化合物的势能面只有轻微影响。然而,计算得到的配分函数表明,取代后的寡聚物的整体柔韧性略大于未取代的寡聚物。根据AB和BC势能面预测选定的平均质子间距离,可对建模结果与对ABC片段进行的核磁共振测量结果进行比较。实验数据与预测数据之间的一致性表明,所建立的势能面正确地反映了此类片段观察到的构象行为,并验证了建模方案。上述结果已扩展到Kdo含量不同的规则和无序长聚合物链。发现Kdo会影响多糖的螺旋构象。有Kdo时稳定螺旋的数量比没有Kdo时多得多。相反,Kdo对多糖未受干扰的无序构象只有适度影响。预测的70 Å的持续长度表明该聚合物是具有适度伸展的半刚性聚合物。通过该预测值与从光散射和粘度实验测得的95 Å的实验值之间的良好一致性,进一步验证了建模结果。这些结果有助于理解这种多糖与土壤的相互作用。

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