Leveson-Gower Reuben B, Zhou Zhi, Drienovská Ivana, Roelfes Gerard
Stratingh Institute for Chemistry, University of Groningen, 9747 AG, Groningen, The Netherlands.
ACS Catal. 2021 Jun 18;11(12):6763-6770. doi: 10.1021/acscatal.1c00996. Epub 2021 May 26.
The construction and engineering of artificial enzymes consisting of abiological catalytic moieties incorporated into protein scaffolds is a promising strategy to realize non-natural mechanisms in biocatalysis. Here, we show that incorporation of the noncanonical amino acid para-aminophenylalanine (pAF) into the nonenzymatic protein scaffold LmrR creates a proficient and stereoselective artificial enzyme (LmrR_pAF) for the vinylogous Friedel-Crafts alkylation between α,β-unsaturated aldehydes and indoles. pAF acts as a catalytic residue, activating enal substrates toward conjugate addition via the formation of intermediate iminium ion species, while the protein scaffold provides rate acceleration and stereoinduction. Improved LmrR_pAF variants were identified by low-throughput directed evolution advised by alanine-scanning to obtain a triple mutant that provided higher yields and enantioselectivities for a range of aliphatic enals and substituted indoles. Analysis of Michaelis-Menten kinetics of LmrR_pAF and evolved mutants reveals that different activities emerge via evolutionary pathways that diverge from one another and specialize catalytic reactivity. Translating this iminium-based catalytic mechanism into an enzymatic context will enable many more biocatalytic transformations inspired by organocatalysis.
将非生物催化部分整合到蛋白质支架中构建人工酶是在生物催化中实现非天然机制的一种很有前景的策略。在此,我们展示了将非天然氨基酸对氨基苯丙氨酸(pAF)整合到非酶蛋白支架LmrR中,可创建一种高效且立体选择性的人工酶(LmrR_pAF),用于α,β-不饱和醛与吲哚之间的烯醇式傅克烷基化反应。pAF作为催化残基,通过形成中间体亚胺离子物种来活化烯醛底物以进行共轭加成,而蛋白质支架则提供速率加速和立体诱导作用。通过丙氨酸扫描指导的低通量定向进化鉴定出改进的LmrR_pAF变体,以获得一个三重突变体,该突变体对一系列脂肪族烯醛和取代吲哚具有更高的产率和对映选择性。对LmrR_pAF和进化突变体的米氏动力学分析表明,不同的活性通过彼此不同且专门化催化反应性的进化途径出现。将这种基于亚胺的催化机制转化为酶促环境将使更多受有机催化启发的生物催化转化成为可能。