论文标题

马提尼3个粗粒的力场,用于碳水化合物

Martini 3 Coarse-Grained Force Field for Carbohydrates

论文作者

Grünewald, Fabian, Punt, Mats H., Jefferys, Elizabeth E., Vainikka, Petteri A., Virtanen, Valtteri, König, Melanie, Pezeshkian, Weria, Karonen, Maarit, Sansom, Mark S. P., Souza, Paulo C. T, Marrink, Siewert J.

论文摘要

Martini 3力场是Martini粗粒模型的全面重新分析,用于生物分子模拟。由于改善的相互作用平衡,因此可以更准确地描述冷凝相系统。在目前的工作中,我们制定了一种一致的策略,可以在马提尼3的框架内准确地参数碳水化合物分子。特别是,我们开发了一种规范的映射方案,将任意大的碳水化合物分解为有限数量的片段。这些片段的珠类型是通过与单糖和二糖的理化特性匹配的。此外,还制定了指定债券,角度和二核的指南。这些准则使碳水化合物构象的描述比马提尼2力场更准确。我们表明,使用这种方法获得的模型能够准确地繁殖碳水化合物水溶液的渗透压。此外,我们提供的证据表明该模型可以正确区分多葡萄糖葡萄糖葡萄糖(水溶性)和纤维素(不溶性,但可溶于离子液体)的溶解度。最后,我们证明了新的构建块可以应用于糖脂,能够重现膜特性并诱导外周膜蛋白的结合。这些测试案例证明了我们方法的有效性和可传递性。

The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomolecular simulations. Due to the improved interaction balance it allows for more accurate description of condensed phase systems. In the present work we develop a consistent strategy to parametrize carbohydrate molecules accurately within the framework of Martini 3. In particular, we develop a canonical mapping scheme that decomposes arbitrarily large carbohydrates into a limited number of fragments. Bead types for these fragments have been assigned by matching physicochemical properties of mono- and disaccharides. In addition, guidelines for assigning bonds, angles, and dihedrals are developed. These guidelines enable a more accurate description of carbohydrate conformations than in the Martini 2 force field. We show that models obtained with this approach are able to accurately reproduce osmotic pressures of carbohydrate water solutions. Furthermore, we provide evidence that the model differentiates correctly the solubility of the poly-glucoses dextran (water soluble) and cellulose (water insoluble, but soluble in ionic-liquids). Finally, we demonstrate that the new building blocks can be applied to glycolipids, being able to reproduce membrane properties and to induce binding of peripheral membrane proteins. These test cases demonstrate the validity and transferability of our approach.

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