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首页> 外文期刊>ACS Chemical Biology >Progressive Stereo Locking (PSL): A Residual Dipolar Coupling Based Force Field Method for Determining the Relative Configuration of Natural Products and Other Small Molecules
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Progressive Stereo Locking (PSL): A Residual Dipolar Coupling Based Force Field Method for Determining the Relative Configuration of Natural Products and Other Small Molecules

机译:逐步立体声锁定(PSL):基于残余的偶极耦合力现场方法,用于确定天然产物和其他小分子的相对配置

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摘要

Establishing the relative configuration of a bioactive natural product represents the most challenging part in determining its structure. Residual dipolar couplings (RDCs) are sensitive probes of the relative spatial orientation of internuclear vectors. We adapted a force field structure calculation methodology to allow free sampling of both R and S configurations of the stereocenters of interest. The algorithm uses a floating alignment tensor in a simulated annealing protocol to identify the conformations and configurations that best fit experimental RDC and distance restraints (from NOE and J-coupling data). A unique configuration (for rigid molecules) or a very small number of configurations (for less rigid molecules) of the structural models having the lowest chiral angle energies and reasonable magnitudes of the alignment tensor are provided as the best predictions of the unknown configuration. For highly flexible molecules, the progressive locking of their stereocenters into their statistically dominant R or S state dramatically reduces the number of possible relative configurations. The result is verified by checking that the same configuration is obtained by initiating the locking from different regions of the molecule. For all molecules tested having known configurations (with conformations ranging from mostly rigid to highly flexible), the method accurately determined the correct configuration.
机译:建立生物活性天然产物的相对配置代表了确定其结构的最具挑战性的部分。残留的偶极耦合(RDC)是核心型载体相对空间取向的敏感探针。我们改编了一种力现场结构计算方法,以允许自由采样对感兴趣的立体中心的R和S配置。该算法在模拟退火协议中使用浮动对准张量,以识别最适合实验RDC和距离限制的构象和配置(来自NOE和J耦合数据)。提供具有最低手性角能的结构模型的独特配置(对于刚性分子)或非常少量的构造(用于较少的刚性分子),其具有最低手性角能和对准张量的合理大小的结构模型作为未知配置的最佳预测。对于高度灵活的分子,将其立体中心的逐步锁定到其统计主导地位的R或S状态显着降低了可能的相对配置的数量。通过检查通过从分子的不同区域锁定获得相同的配置来验证结果。对于具有已知构造的所有测试的分子(具有从大多数刚性到高度柔韧的构象的构象),该方法精确地确定了正确的配置。

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