Bhakta Snehadri, Nayek Abhijit, Roy Bijan, Dey Abhishek
Department of Inorganic Chemistry , Indian Association for the Cultivation of Science , Kolkata , India 700032.
Inorg Chem. 2019 Mar 4;58(5):2954-2964. doi: 10.1021/acs.inorgchem.8b02707. Epub 2019 Feb 8.
Emulating enzymatic reactivity using small molecules has been a long-time challenging pursuit of the scientific community. Peroxidases, ubiquitous heme enzymes that are involved in hormone synthesis and the immune system, have been a prime target of such efforts due to their tremendous potential in the chemical industry as well as in wastewater treatment. Here it is demonstrated that inclusion of a second sphere guanidine moiety in an iron porphyrin not only makes this small molecule a veritable peroxidase catalyst but also offers an auxiliary binding site for organic substrates, facilitating their rapid oxidation with a green oxidant like HO. This small molecule analogue exhibits a "ping-pong" mechanism and Michaelis-Menten type kinetics, which is generally typical of metallo-enzymes and follows a mechanism of the natural enzyme in its entirety, including the formation of compound I as the primary oxidant.
利用小分子模拟酶促反应一直是科学界长期以来具有挑战性的追求。过氧化物酶是参与激素合成和免疫系统的普遍存在的血红素酶,由于其在化学工业以及废水处理中的巨大潜力,一直是此类努力的主要目标。本文证明,在铁卟啉中引入二级胍基部分不仅使这种小分子成为名副其实的过氧化物酶催化剂,还为有机底物提供了一个辅助结合位点,便于其与绿色氧化剂如HO快速氧化。这种小分子类似物表现出“乒乓”机制和米氏动力学,这通常是金属酶的典型特征,并且完全遵循天然酶的机制,包括形成作为主要氧化剂的化合物I。