Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.
J Am Chem Soc. 2024 Oct 9;146(40):27267-27273. doi: 10.1021/jacs.4c09989. Epub 2024 Sep 27.
α-Amino esters are precursors to noncanonical amino acids used in developing small-molecule therapeutics, biologics, and tools in chemical biology. α-C-H amination of abundant and inexpensive carboxylic acid esters through nitrene transfer presents a direct approach to α-amino esters. Methods for nitrene-mediated amination of the protic α-C-H bonds in carboxylic acid esters, however, are underdeveloped. This gap arises because hydrogen atom abstraction (HAA) of protic C-H bonds by electrophilic metal-nitrenoids is slow: metal-nitrenoids preferentially react with polarity-matched, hydridic C-H bonds, even when weaker protic C-H bonds are present. This study describes the discovery and evolution of highly stable protoglobin nitrene transferases that catalyze the enantioselective intermolecular amination of the α-C-H bonds in carboxylic acid esters. We developed a high-throughput assay to evaluate the activity and enantioselectivity of mutant enzymes together with their sequences using the Every Variant Sequencing (evSeq) method. The assay enabled the identification of enantiodivergent enzymes that function at ambient conditions in whole cells and whose activities can be enhanced by directed evolution for the amination of a range of substrates.
α-氨基酯是用于开发小分子治疗药物、生物制剂和化学生物学工具的非典型氨基酸的前体。通过氮烯转移将丰富且廉价的羧酸酯中的α-C-H 氨化,这是一种直接合成α-氨基酯的方法。然而,羧酸酯中质子α-C-H 键的氮烯介导的胺化方法还不够发达。这一差距的出现是因为亲电金属-氮烯对质子 C-H 键的氢原子提取 (HAA) 速度较慢:金属-氮烯优先与极性匹配的氢化物 C-H 键反应,即使存在较弱的质子 C-H 键也是如此。本研究描述了高度稳定的原球蛋白氮烯转移酶的发现和演变,该酶能够催化羧酸酯中α-C-H 键的对映选择性分子间胺化。我们开发了一种高通量测定法,使用 Every Variant Sequencing (evSeq) 方法评估突变酶的活性和对映选择性及其序列。该测定法能够鉴定在环境条件下在全细胞中发挥作用的对映体发散酶,并且可以通过定向进化来增强其活性,以实现一系列底物的胺化。