Department of Chemistry, Indian Institute of Technology Guwahati, Assam 781039, India.
Manchester Institute of Biotechnology and the Department of Chemical Engineering and Analytical Science, The University of Manchester, 131 Princess Street, Manchester M1 7DN, UK.
Org Biomol Chem. 2021 Mar 11;19(9):1879-1899. doi: 10.1039/d0ob02204g.
Aldehyde deformylation is an important reaction in biology, organic chemistry and inorganic chemistry and the process has been widely applied and utilized. For instance, in biology, the aldehyde deformylation reaction has wide differences in biological function, whereby cyanobacteria convert aldehydes into alkanes or alkenes, which are used as natural products for, e.g., defense mechanisms. By contrast, the cytochromes P450 catalyse the biosynthesis of hormones, such as estrogen, through an aldehyde deformylation reaction step. In organic chemistry, the aldehyde deformylation reaction is a common process for replacing functional groups on a molecule, and as such, many different synthetic methods and procedures have been reported that involve an aldehyde deformylation step. In bioinorganic chemistry, a variety of metal(iii)-peroxo complexes have been synthesized as biomimetic models and shown to react efficiently with aldehydes through deformylation reactions. This review paper provides an overview of the various aldehyde deformylation reactions in organic chemistry, biology and biomimetic model systems, and shows a broad range of different chemical reaction mechanisms for this process. Although a nucleophilic attack at the carbonyl centre is the consensus reaction mechanism, several examples of an alternative electrophilic reaction mechanism starting with hydrogen atom abstraction have been reported as well. There is still much to learn and to discover on aldehyde deformylation reactions, as deciphered in this review paper.
醛去甲酰基化是生物学、有机化学和无机化学中的一个重要反应,该过程已被广泛应用和利用。例如,在生物学中,醛去甲酰基化反应具有广泛的生物学功能差异,其中蓝细菌将醛转化为烷烃或烯烃,这些化合物被用作天然产物,例如防御机制。相比之下,细胞色素 P450 通过醛去甲酰基化反应步骤催化激素(如雌激素)的生物合成。在有机化学中,醛去甲酰基化反应是一种常见的在分子上取代官能团的过程,因此,已经报道了许多不同的合成方法和步骤,其中涉及醛去甲酰基化步骤。在生物无机化学中,已经合成了各种金属(iii)-过氧配合物作为仿生模型,并通过去甲酰基化反应有效地与醛反应。本文综述了有机化学、生物学和仿生模型系统中的各种醛去甲酰基化反应,并展示了该过程的广泛的不同化学反应机制。尽管亲核进攻羰基中心是共识的反应机制,但也已经报道了几种起始于氢原子提取的替代亲电反应机制的例子。正如本文综述中所阐述的,对于醛去甲酰基化反应,还有很多需要学习和发现的地方。