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Biosynthesis of Grandione: An Example of Tandem Hetero Diels-Alder/Retro-Claisen Rearrangement Reaction?

机译:Grandione的生物合成:串联杂Diels-Alder / Retro-Claisen重排反应的例子吗?

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摘要

Mechanistic theoretical studies about the feasibility of the traditional proposed mechanism of formation for icetexane diterpene dimer grandione were assessed using density functional method at the M06-2X/6-31G(d,p) level of theory. Bulk water solvent effects were taken into account implicitly using the polarizable continuum model (SCI-PCM). The results were compared with the selectivity found in the biomimetic synthesis performed by experimental research groups. The relative free energy calculation shows that the one-step H-DA formation mechanism nominated in the literature is not a viable mechanism. We found that an alternative competing Tandem pathway is consistent with the experimental trends. Thus, our results suggested that the compound grandione is formed via a H-DA/retro-Claisen rearrangement and not by the traditional H-DA mechanism proposed early in the experimental studies. The H-DA initial step produce a biecyclic adduct followed by a domino retro-Claisen rearrangement that releases the energy strain of the bicyclic intermediary. Steric issues and hyperconjugation interactions are the mainly factors driving the reaction nature and the selectivity in the formation reaction. Finally, the enzymatic assistance for dimer formation was analyzed in terms of the calculated transition state energy barrier.
机译:使用密度泛函方法在M06-2X / 6-31G(d,p)的理论水平上评估了有关传统的拟议的冰烷二萜二聚体二聚体形成机理可行性的力学理论研究。使用可极化连续介质模型(SCI-PCM)隐式考虑了大量水溶剂的影响。将结果与实验研究小组在仿生合成中发现的选择性进行了比较。相对自由能的计算表明,文献中提出的单步H-DA形成机理不是可行的机理。我们发现替代性竞争串联途径与实验趋势一致。因此,我们的结果表明,该化合物由H-DA / retro-Claisen重排形成,而不是由实验研究初期提出的传统H-DA机制形成。 H-DA起始步骤产生双环加合物,然后发生多米诺骨牌逆克莱森重排,释放了双环中间体的能量应变。立体问题和超共轭相互作用是驱动反应性质和形成反应选择性的主要因素。最后,根据计算的过渡态能垒分析了用于形成二聚体的酶促助剂。

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