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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Structure of arabinogalactan-protein from Acacia gum: From porous ellipsoids to supramolecular architectures
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Structure of arabinogalactan-protein from Acacia gum: From porous ellipsoids to supramolecular architectures

机译:相思树胶的阿拉伯半乳聚糖蛋白的结构:从多孔椭圆体到超分子结构

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摘要

The structure of the arabinogalactan-protein (AGP) fraction of the gum exudate of Acacia Senegal (gum Arabic) isolated from hydrophobic interaction chromatography was investigated using HPSEC-MALLS, small angle neutron scattering and TEM observations. Literature reported that the AGP structure of gum Arabic adopts a very compact conformation in solution due to the attachment of short arabinoside side chains and much larger blocks of carbohydrate to the polypeptidic backbone. The present study revealed that AGP in solution had a weight average molecular weight M_w of 1.86 x 10~6 g mol~(-1) and a radius of gyration R_g of 30nm. In addition, two exponent values were identified in the R_g, [η], R_h, and ρ vs. M_w relationships highlighting two types of conformations depending on the molecular weight range considered: a low molar mass population with long-chain branching and a compact conformation and a high molar mass population with short-chain branching and an elongated conformation. AGP would behave in solution as a branched or hyper-branched polymer with conformations ranging from globular to elongated shape depending on the size of the carbohydrate branches. Small angle scattering form factor revealed an elongated average conformation corresponding to a triaxial ellipsoid while inverse Fourier transform of the scattering form factor gave a maximum dimension for AGP of 64 nm. Transmission electron microscopy highlighted the existence of two types of flat objects with thicknesses below 3-5 nm, single particles with a more or less anisotropic spheroidal shape and aggregated structures with a more elongated shape. A remarkable feature of all particle morphologies was the presence of an outer structure combined to an inner more or less porous network of interspersed chains or interacting structural blocks, as previously found for the arabinogalactan (AG) main molecular fraction of Acacia gum. However, clear differences were observed in the density and morphology of the inner porous network, probably highlighting differences in the degree of branching. The existence of assembled AG as part of the AGP family was confirmed using TEM micrographs at high resolution. Fused AGP dimers, trimers, tetramers and multimers were also identified. These molecular assemblies questioned about the nature of interactions involved.
机译:使用HPSEC-MALLS,小角中子散射和TEM观察技术研究了从疏水相互作用色谱分离的塞内加尔阿拉伯胶(阿拉伯胶)的阿拉伯树胶分泌蛋白(AGP)馏分的结构。文献报道阿拉伯胶的AGP结构在溶液中采用非常紧凑的构象,这是由于短的阿拉伯糖苷侧链和更大的碳水化合物嵌段附着在多肽骨架上。本研究表明,溶液中的AGP重均分子量M_w为1.86 x 10〜6 g mol〜(-1),回转半径R_g为30nm。此外,在R_g,[η],R_h和ρ与M_w的关系中确定了两个指数值,根据所考虑的分子量范围突出了两种类型的构象:低摩尔质量的分子,具有长链分支和紧密的结构构象和具有短链分支和细长构象的高摩尔质量种群。 AGP在溶液中表现为支链或超支链聚合物,其构象范围从球形到细长形,取决于碳水化合物分支的大小。小角散射形状因数揭示了对应于三轴椭球的细长平均构象,而散射形状因数的傅立叶逆变换给出了AGP的最大尺寸为64 nm。透射电子显微镜强调存在两种类型的厚度小于3-5 nm的扁平物体,具有或多或少各向异性球状的单个颗粒以及具有更细长形状的聚集结构。所有颗粒形态的显着特征是存在一个外部结构,该内部结构与散布的链或相互作用的结构块的内部或多或少的内部多孔网络结合在一起,如先前针对阿拉伯胶的阿拉伯半乳聚糖(AG)主分子部分所发现的。然而,在内部多孔网络的密度和形态上观察到明显的差异,可能突出了分支程度的差异。使用高分辨率的TEM显微照片证实了组装的AG作为AGP家族的一部分的存在。还鉴定了熔融的AGP二聚体,三聚体,四聚体和多聚体。这些分子组装质疑所涉及的相互作用的性质。

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