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In Silico Modeling of Spirolides and Gymnodimines: Determination of S Configuration at Butenolide Ring Carbon C-4

机译:在螺旋晶体和晶体纤维质模拟中的硅涂层中:丁胶环环碳C-4施用的测定

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Only few naturally occurring cyclic imines have been fully structurally elucidated or synthesized to date. The configuration at the C-4 carbon plays a pivotal role in the neurotoxicity of many of these metabolites, for example, gymnodomines (GYMs) and spirolides (SPXs). However, the stereochemistry at this position is not accessible by nuclear Overhauser effect—nuclear magnetic resonance spectroscopy (NOE-NMR) due to unconstrained rotation of the single carbon bond between C-4 and C-5. Consequently, the relative configuration of GYMs and SPXs at C-4 and its role in protein binding remains elusive. Here, we determined the stereochemical configuration at carbon C-4 in the butenolide ring of spirolide- and gymnodimine-phycotoxins by comparison of measured 13 C NMR shifts with values obtained in silico using force field, semiempirical and density functional theory methods. This comparison demonstrated that modeled data support S configuration at C-4 for all studied SPXs and GYMs, suggesting a biosynthetically conserved relative configuration at carbon C-4 among these toxins.
机译:只有很少的天然存在的循环膜已经完全在结构上阐明或合成到目前为止。 C-4碳的结构在这些代谢物中许多代谢物的神经毒性中起着枢转作用,例如,Gymnodomines(健身房)和螺旋岩(SPX)。然而,由于在C-4和C-5之间的单碳键的不受约约束的旋转,核传承核磁共振谱(NOE-NMR)无法通过核传承核磁共振光谱(NOE-NMR)来访问该位置的立体化学。因此,C-4的健身房和SPX的相对配置及其在蛋白质结合中的作用仍然是难以捉摸的。这里,我们通过使用力场,半透镜和密度泛函理论方法比较测量的13 C NMR变换,确定螺旋晶和室内胺 - 植物毒素的丁胶环环中的碳C-4的立体化学构型。该比较表明,所有研究的SPX和健身房的C-4建模数据支持S配置,暗示在这些毒素中的碳C-4处的生物合成相对配置。

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