Departamento de Química, Centro de Investigación en Síntesis Química, Universidad de La Rioja , 26006 Logroño, La Rioja, Spain.
J Org Chem. 2017 Dec 15;82(24):13250-13255. doi: 10.1021/acs.joc.7b02352. Epub 2017 Dec 4.
The reactivity of cyclic tertiary sulfamidates derived from α-methylisoserine strongly depends on the substitution at the C and N termini. These substrates are one of the very few examples able to undergo nucleophilic ring opening at a quaternary carbon with complete inversion of the configuration, as demonstrated both experimentally and computationally. When the sulfonamide is unprotected, the characteristic ring-opening reaction is completely silenced, which explains that the majority of the ring-opening reactions reported in the literature invoke N-alkyl or N-carbonyl-protected sulfamidates. Accumulation of negative charge at the NSO moiety in the transition state, especially when the sulfonamide NH is deprotonated, drastically raises the activation barrier for the nucleophilic attack. On the other hand, ester groups at the carboxylic position favor ring opening, whereas amides allow competition between the substitution and elimination pathways. Using pyridine as a nucleophilic probe, we have demonstrated both experimentally and computationally that a proper selection of the substitution scheme can enhance the synthetic scope of α-methylisoserine-derived sulfamidates, switching off and on the nucleophilic ring-opening in a controlled manner. This is particularly convenient for hybrid α/β-peptide synthesis, as demonstrated recently by our group.
环状叔磺酰胺酯类化合物由α-甲基异丝氨酸衍生而来,其反应活性强烈依赖于 C 端和 N 端的取代基。这些底物是极少数能够在季碳原子上进行亲核开环反应,且构型完全反转的实例之一,这一结论无论是在实验上还是理论计算上都得到了证实。当磺酰胺未被保护时,特征性的开环反应完全被抑制,这解释了为什么文献中报道的大多数开环反应都涉及 N-烷基或 N-羰基保护的磺酰胺酯。在过渡态中,NSO 部分积累的负电荷,特别是当磺酰胺的 NH 被去质子化时,会极大地提高亲核进攻的活化能垒。另一方面,羧酸位置上的酯基有利于开环,而酰胺基允许取代和消除两种反应途径进行竞争。我们使用吡啶作为亲核探针,从实验和理论两方面证明,通过适当选择取代方案,可以提高α-甲基异丝氨酸衍生的磺酰胺酯的合成范围,以可控的方式实现亲核开环的开启和关闭。这对于杂合α/β-肽合成特别方便,正如我们小组最近所证明的那样。