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Theoretical Study of the Catalysis of Cyanohydrin Formation by the Cyclic Dipeptide Catalyst cyclo[(S)-His-(S)-Phe]

机译:环二肽催化剂环[(S)-His-(S)-Phe]催化氰醇形成的理论研究

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摘要

Dipeptide cyclo[(S)-His-(S)-Phe] 1, first applied by Inoue et al. in 1981, catalyzes the hydrocyanation of aromatic aldehydes very efficiently. Enantioselective autoinduction has also been reported for the process. We have employed QM (density functional theory and MP2), molecular mechanics (MM), and molecular dynamics (MD) methods to (i) derive a mechanistic picture for catalysis and (ii) reveal the origin of stereochemistry and autoinduction. A dimer is proposed to be the catalytic species, in which one imidazole group is essential for the delivery of the nucleophile and the second imidazole group acts as an acid, accompanied with pi-interaction for most favorable substrate binding. Hydrogen-bonding via hydroxy groups is crucial for catalysis also. MD studies indicate stability Of the dimer only in non-polar media, which is consistent with the need of the experimental (heterogeneous) reaction conditions to achieve high enantioselectivities. DFT and MP2 results suggest the incorporation of the product cyanohydrin via extended edge-to-face g-interaction over three aromatic units. Transition states derived from this model are in good agreement with experimental findings and enantioselectivities.
机译:二肽环[(S)-His-(S)-Phe] 1,首先由Inoue等人应用。 1981年,它非常有效地催化了芳香醛的氢氰化反应。还报道了该过程的对映选择性自动诱导。我们已经采用了QM(密度泛函理论和MP2),分子力学(MM)和分子动力学(MD)方法来(i)得出用于催化的机理图,并且(ii)揭示立体化学和自感应的起源。提出了一种二聚体作为催化物质,其中一个咪唑基团对于亲核试剂的传递是必不可少的,而另一个咪唑基团充当酸,并伴随有π-相互作用,以实现最有利的底物结合。通过羟基的氢键对于催化也至关重要。 MD研究表明,二聚体仅在非极性介质中具有稳定性,这与实现高对映选择性的实验性(非均质)反应条件相一致。 DFT和MP2结果表明,通过在三个芳族单元上进行扩展的边对面g相互作用,可以引入产物氰醇。从该模型得出的过渡态与实验结果和对映选择性高度吻合。

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