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Steric and Electronic Effects on an Antibody-Catalyzed Diels-Alder Reaction

机译:抗体催化的Diels-Alder反应的立体效应和电子效应

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A series of substituted thiophene dioxides was tested as diene substrates for the antibody 1E9, which was elicited with a hexachloronorbornene derivative and normally catlayzes the inverse electron-demand Diels-Alder reaction between 2,3,4,5-tetrachlorthiophene dioxide (TCTD) and N-ethylmaleimide (NEM). Previous structural and computational studies had suggested that the catalytic efficiency of this system derives in part from a very snug fit between the apolar active site and the transition state of this reaction. Nevertheless, replacing all the Cl-atoms in the hapten with Br-atoms leads to no less in affinity (K_d = -0.1 nM), indicating substantial conformational flexibility in the residues that line the binding pocket. Consistent with this observation, the 2,3,4,5-tetrbromothiophene dioxide is a good substrate for the antibody (k_cat = 1.8 min~(-1), K_NEM = 14 muM), despite being considerably larger than TCTD. In contrast, normal electron-demand Diels-Alder reactions between NEM and unsubstituted thiophene dioxide or 2,3,4,5-tetramethylthiophene dioxide, which are much smaller or nearly isosteric with TCTD, respectively, are not detectably accelerated. These results show that the electronic properties of the 1E9 active site are optimized to a remarkable degree for the inverse electron-demand Diels-Alder reaction for which it was designed. Indeed, they appear to play a more important role in catalysis than simple proximity effects.
机译:测试了一系列取代的噻吩二氧化物作为抗体1E9的二烯底物,该抗体是用六氯降冰片烯衍生物引发的,通常催化2,3,4,5-四氯噻吩二氧化物(TCTD)与电子逆需求Diels-Alder反应。 N-乙基马来酰亚胺(NEM)。先前的结构和计算研究表明,该系统的催化效率部分源于非极性活性位点与该反应的过渡态之间的紧密结合。然而,用Br原子取代半抗原中的所有Cl原子会导致亲和力降低(K_d = -0.1 nM),这表明位于结合口袋中的残基具有显着的构象柔性。与该观察结果一致,尽管2,3,4,5-四溴噻吩二氧化物比TCTD大得多,但却是抗体的良好底物(k_cat = 1.8 min〜(-1),K_NEM = 14μM)。相比之下,NEM和未取代的噻吩二氧化物或2,3,4,5-四甲基噻吩二氧化物之间的正常电子需求Diels-Alder反应,分别与TCTD相比要小得多或几乎是等排的,没有被检测到加速。这些结果表明1E9活性位点的电子性质在针对其设计的反向电子需求Diels-Alder反应中得到了最佳程度的优化。实际上,它们似乎在催化中比简单的邻近效应更重要。

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