Braccini I, Grasso R P, Pérez S
Centre de Recherches sur les Macromolécules Végétales, CNRS, Grenoble, France.
Carbohydr Res. 1999 Apr 30;317(1-4):119-30. doi: 10.1016/s0008-6215(99)00062-2.
Modeling simulations have been performed on the four regular glycuronans: alpha-D-(1--->4) polygalacturonic, alpha-L-(1--->4) polyguluronic, beta-D-(1--->4) polymannuronic, and beta-D-(1--->4) polyglucuronic acids. The goal of this study was to characterize the similarities and differences in conformational and configurational behavior as well as in calcium binding in order to progress in the understanding of the physicochemical properties of the parent polysaccharides of industrial interest, namely pectin, alginate and glucuronan. This required the evaluation of the accessible conformational space for the disaccharide subunits of the four homopolymers, using the flexible residue protocol of the MM3 molecular mechanics procedure. The results were used to access the configurational statistics of representative polysaccharide chains, as well as for the determination of the regular polysaccharide helices and their conformational transitions. The surfaces of all regular helices likely to occur for each polyuronide were explored for cation binding using the GRID procedure. Both alpha-D-(1--->4) polygalacturonate and alpha-L-(1--->4) polyguluronate chains exhibit a high specificity for calcium binding, and have well-defined chelation sites. In contrast, beta-D-(1--->4) polymannuronate and beta-D-(1--->4) polyglucuronate chains do not display any stereospecificity for calcium binding. The results gathered from molecular modeling lead to a clear understanding of the different structural features that are displayed by the four ionic polymers.
α-D-(1→4)聚半乳糖醛酸、α-L-(1→4)聚古罗糖醛酸、β-D-(1→4)聚甘露糖醛酸和β-D-(1→4)聚葡萄糖醛酸。本研究的目的是表征构象和构型行为以及钙结合方面的异同,以便在理解具有工业价值的母体多糖(即果胶、藻酸盐和葡糖醛酸聚糖)的物理化学性质方面取得进展。这需要使用MM3分子力学程序的灵活残基协议评估四种均聚物二糖亚基可及的构象空间。结果用于获取代表性多糖链的构型统计数据,以及确定规则多糖螺旋及其构象转变。使用GRID程序探索了每种聚糖醛酸可能出现的所有规则螺旋表面的阳离子结合情况。α-D-(1→4)聚半乳糖醛酸链和α-L-(1→4)聚古罗糖醛酸链对钙结合均表现出高特异性,且具有明确的螯合位点。相比之下,β-D-(1→4)聚甘露糖醛酸链和β-D-(1→4)聚葡萄糖醛酸链对钙结合未表现出任何立体特异性。从分子建模收集的结果使人们清楚地了解了这四种离子聚合物所呈现的不同结构特征。