多糖建模:现状与挑战

Serge Pérez , Milou Kouwijzer , Karim Mazeau , Søren Balling Engelsen
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引用次数: 59

摘要

最近的工具,已开发为建模的三维特征的多糖和碳水化合物聚合物提出。讲座首先描述了单糖和柔性环的构象,例如在五元环的情况下,以及在真空或水相中双糖单元可用的构象空间的全面描述。基于假设,由于单糖单元的大小和相对刚性,在某些条件下,在特定链接上的旋转可以被认为是独立于最近邻相互作用的,对母体多糖的建模进行了扩展。描述了适当的建模技术,可以深入了解解决方案中链的尺寸,最好将其描述为伴随局部“螺旋”区域出现的随机线圈。借助诸如螺旋参数之类的描述符,可以很容易地表征多糖链的有序状态。然后可以尝试产生双螺旋或三螺旋,以探索这种可能具有能量稳定的多链排列的发生。确定有序状态下多糖结构的最后一步是研究不同螺旋的相互作用。这可能导致两个聚合物链之间的最佳排列,或预测尺寸,以及三维晶格的对称性。已经开发的一些工具应该允许通过探索性数据分析自动搜索结构和功能之间有意义的相关性。然后可以使用结构-功能或结构-属性相关性来模拟由结构改变引起的变化。这将打开多糖工程领域。
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Modeling polysaccharides: Present status and challenges

The most recent tools that have been developed for modeling the three-dimensional features of polysaccharides and carbohydrate polymers are presented. The presentation starts with a description of the conformations of the monosaccharides, and of the flexible rings such as in the case of five-membered rings, and a thorough description of the conformational space that is available for a disaccharide unit, either in vacuo or in an aqueous phase. The extension to the modeling of the parent polysaccharides is addressed, based on the assumption that owing to the size and relative rigidity of the intervening monosaccharides units, the rotations at a particular linkage can be, under some conditions, considered as independent of nearest neighbor interactions. Appropriate modeling techniques are described that can provide insights into the dimensions of the chain in a solution which is best described as a random coil accompanied by the occurrence of local “helical” regions. With the help of such descriptors such as helical parameters, the ordered state of polysaccharide strands can be readily characterized. The generation of double or triple helices can be then attempted in order to explore the occurrence of such multistranded arrangements that may be energetically stable. The final step in the determination of the structure of polysaccharides in the ordered state, is the investigation of the interactions of different helices. This may lead to either the best arrangement(s) between two polymeric chains, or to the prediction of the dimensions, and the symmetry of a three-dimensional lattice. Some of the tools which have been developed should allow automatic scarches for meaningful correlations between structures and functions, through exploratory data analysis. Structure-function or structure-property correlation could be then used to model changes arising from structural alterations. This would open the field of polysaccharide engineering.

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