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Highly Selective Directed Iridium‐Catalyzed Hydrogen Isotope Exchange Reactions of Aliphatic Amides

机译:脂肪族酰胺的高选择性定向铱催化氢同位素交换反应

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摘要

For the first time, we describe highly selective homogeneous iridium‐catalyzed hydrogen isotope exchange (HIE) of unactivated C(sp3) centers in aliphatic amides. When using the commercially available Kerr catalyst, the HIE with a series of common antibody–drug conjugate (ADC) linker side chains proceeds with high yields, high regioselectivity, and with deuterium incorporation up to 99 %. The method is fully translatable to the specific requirements of tritium chemistry and its effectiveness was demonstrated by direct tritium labelling of a maytansinoid. The scope of the method can be extended to simple amino acids, with high HIE activity observed for glycine and alanine. In di‐ and tripeptides, a very interesting protecting‐group‐dependent tunable selectivity was observed. DFT calculations gave insight into the energies of the transition states, thereby explaining the observed selectivity and the influence of the amino acid protecting groups.
机译:首次,我们描述了脂族酰胺中未活化的C(sp 3 )中心的高选择性均相铱催化氢同位素交换(HIE)。当使用市售的Kerr催化剂时,带有一系列常见抗体-药物偶联物(ADC)接头侧链的HIE的收率高,区域选择性高,并且氘的掺入率高达99%。该方法可完全转化为of化学的特定要求,并且通过直接may标记美登木素生物碱证明了其有效性。该方法的范围可以扩展到简单氨基酸,对甘氨酸和丙氨酸具有很高的HIE活性。在二肽和三肽中,观察到了非常有趣的依赖保护基团的可调选择性。 DFT计算使人们深入了解了过渡态的能量,从而解释了所观察到的选择性和氨基酸保护基团的影响。

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