Kambanis Lucas, Chisholm Timothy S, Kulkarni Sameer S, Payne Richard J
School of Chemistry, The University of Sydney Sydney NSW 2006 Australia.
Australian Research Council Centre of Excellence for Innovations in Peptide and Protein Science, The University of Sydney Sydney NSW 2006 Australia
Chem Sci. 2021 Jun 29;12(29):10014-10021. doi: 10.1039/d1sc02781f. eCollection 2021 Jul 28.
The development of an iterative one-pot peptide ligation strategy is described that capitalises on the rapid and efficient nature of the diselenide-selenoester ligation reaction, together with photodeselenisation chemistry. This ligation strategy hinged on the development of a novel photolabile protecting group for the side chain of selenocysteine, namely the 7-diethylamino-3-methyl coumarin (DEAMC) moiety. Deprotection of this DEAMC group can be effected in a mild, reagent-free manner using visible light ( = 450 nm) without deleterious deselenisation of selenocysteine residues, thus enabling a subsequent ligation reaction without purification. The use of this DEAMC-protected selenocysteine in iterative DSL chemistry is highlighted through the efficient one-pot syntheses of 60- and 80-residue fragments of mucin-1 as well as apolipoprotein CIII in just 2-4 hours.
本文描述了一种迭代一锅法肽连接策略的开发,该策略利用了二硒键-硒酯连接反应的快速高效特性以及光脱硒化学。这种连接策略基于为硒代半胱氨酸侧链开发的一种新型光不稳定保护基团,即7-二乙氨基-3-甲基香豆素(DEAMC)部分。使用可见光(λ = 450 nm)可以以温和、无试剂的方式实现该DEAMC基团的脱保护,而不会对硒代半胱氨酸残基进行有害的脱硒反应,从而无需纯化即可进行后续的连接反应。通过在短短2-4小时内高效一锅合成粘蛋白-1的60和80个残基片段以及载脂蛋白CIII,突出了这种DEAMC保护的硒代半胱氨酸在迭代二硒键连接化学中的应用。