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Does Microsecond Sugar Ring Flexing Encode 3D-Shape and Bioactivity in the Heparanome?

机译:微秒糖环弯曲可以编码肝素瘤中的3D形状和生物活性吗?

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摘要

The biological information encoded in carbohydrate sequences dwarfs that of proteins and nucleic acids. Deciphering structure-function relationships in heparin and heparan sulfate (the heparanome) is further compounded by extreme sequence diversity, experimental difficulties, and the computational cost of rigorous modeling. Here we perform unbiased microsecond dynamics simulations of 11 heparanome oligosaccharides (55 microseconds total) to investigate the effect of sequence on 3D-structure and to underpin a coarse-grained model that is consistent with long-time scale experimentally validated atomic motions in water. Pyranose ring flexing (puckering) in 2-O-sulfo-α-L-iduronic acid, which underlies heparin-mediated anticoagulation, was modulated by polymerization (chain position and adjacent residues), which is supported by previous experiments. Furthermore, in coarse-grained simulations, inclusion of puckering was essential to predict macroscopic hydrodynamic properties of heparan sulfate chains containing hundreds of monosaccharaides. Our structural findings and model enable rational molecular design, and we propose that, in the heparanome, puckering, polymer 3D-shape, and bioactivity are inextricably linked.
机译:碳水化合物序列中编码的生物学信息使蛋白质和核酸的生物学信息相形见war。极端的序列多样性,实验困难以及严格建模的计算成本进一步加剧了肝素和硫酸乙酰肝素(乙酰肝素)中结构与功能之间关系的破译。在这里,我们对11种乙酰肝素寡糖(总共55微秒)进行了无偏微秒动力学仿真,以研究序列对3D结构的影响,并支持与长期规模验证的水中原子运动一致的粗粒度模型。肝素介导的抗凝作用基础的2-O-磺基-α-L-艾杜糖醛酸中的吡喃糖环屈曲(起皱)是通过聚合作用(链位置和相邻残基)来调节的,这得到了先前实验的支持。此外,在粗粒度模拟中,包含褶皱对于预测包含数百个单糖苷的硫酸乙酰肝素链的宏观水动力特性至关重要。我们的结构发现和模型可以进行合理的分子设计,并且我们建议在肝素瘤中,起皱,聚合物3D形状和生物活性是密不可分的。

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