Spiwok Vojtech, Tvaroska Igor
Department of Structure and Function of Saccharides, Centre for Glycomics, Slovak Academy of Sciences, 84538 Bratislava, Slovak Republic.
J Phys Chem B. 2009 Jul 16;113(28):9589-94. doi: 10.1021/jp8113495.
The conformational free energy surface of alpha-N-acetylneuraminic acid (Neu5Ac, sialic acid) in the space of ring-puckering coordinates was calculated using the metadynamics method. Free energy surfaces in vacuum and with an explicit solvent were calculated in GLYCAM 06 force field. In vacuum three structures are almost equivalently populated, namely, the (2)C(5) chair and the B(3,6)/(2)S(6) and (O)S(3) boat/skew-boat conformations. The B(3,6)/(2)S(6) structure is stabilized by an ionic hydrogen bond between the amide N-H bond and the carboxylic group. However, this structure is unfavorable in a water environment in which the experimentally observed (2)C(5) chair conformation is predicted to be more stable than the other structures. These results indicate that environment significantly influences conformation of Neu5Ac and that Neu5Ac-processing enzymes might modify a conformation of their substrates solely by a changing polarity of the environment. The structure of Neu5Ac bound in influenza neuraminidase ((4)S(2)/B(2,5)) belongs to conformations preferred in a water environment. The free energy penalty of this conformational change was calculated (relative to (2)C(5)) as 10.2 +/- 2.0 and 17.3 +/- 2.0 kJ/mol for (4,O)B/(O)S(3) and (4)S(2), respectively. This result indicates that mimicking of the enzyme-bound conformation is likely to be a viable strategy for the design of neuraminidase inhibitors.
采用元动力学方法计算了α - N - 乙酰神经氨酸(Neu5Ac,唾液酸)在环扭曲坐标空间中的构象自由能面。在GLYCAM 06力场中计算了真空和有明确溶剂存在时的自由能面。在真空中,三种结构几乎等量存在,即(2)C(5)椅式构象以及B(3,6)/(2)S(6)和(O)S(3)船式/扭船式构象。B(3,6)/(2)S(6)结构通过酰胺N - H键与羧基之间的离子氢键得以稳定。然而,在水环境中这种结构不利,实验观察到的(2)C(5)椅式构象预计比其他结构更稳定。这些结果表明环境显著影响Neu5Ac的构象,并且Neu5Ac加工酶可能仅通过改变环境极性来改变其底物的构象。结合在流感神经氨酸酶中的Neu5Ac结构((4)S(2)/B(2,5))属于在水环境中更受青睐的构象。对于(4,O)B/(O)S(3)和(4)S(2),相对于(2)C(5),这种构象变化的自由能罚值分别计算为10.2±2.0和17.3±2.0 kJ/mol。这一结果表明模拟酶结合构象可能是设计神经氨酸酶抑制剂的可行策略。