Tomoiagă Raluca Bianca, Nagy Levente Csaba, Boros Krisztina, Moisă Mădălina Elena, Bencze László Csaba
Enzymology and Applied Biocatalysis Research Center, Faculty of Chemistry and Chemical Engineering, Babeş-Bolyai University, Arany János Street 11, RO-400028 Cluj-Napoca, Romania.
ACS Catal. 2025 Apr 18;15(9):7361-7389. doi: 10.1021/acscatal.5c00837. eCollection 2025 May 2.
The enzymatic synthesis of d-phenylalanines, important chiral building blocks for several pharmaceuticals and fine chemicals, has been widely explored. Their asymmetric synthesis of high atom economy and accessible prochiral starting materials is highly attractive, while the expanding toolbox of protein engineering facilitates access to biocatalysts tailored for these processes. Accordingly, this Review provides an overview of the protein engineering efforts of enzymes involved in the asymmetric synthetic pathways for d-phenylalanines. The engineering efforts on d-amino acid dehydrogenases, d-amino acid transaminases, and phenylalanine ammonia-lyases to produce d-phenylalanines are thoroughly examined, while their application in (chemo)enzymatic cascades is also discussed. For an improved efficiency of the cascades, the protein engineering of l-amino acid deaminases and/or l-amino acid oxidases for an increased transformation of phenylalanines is also addressed.
d-苯丙氨酸是多种药物和精细化学品的重要手性结构单元,其酶促合成已得到广泛研究。它们具有高原子经济性的不对称合成以及可获取的前手性起始原料极具吸引力,同时不断扩展的蛋白质工程工具库有助于获得适用于这些过程的生物催化剂。因此,本综述概述了参与d-苯丙氨酸不对称合成途径的酶的蛋白质工程研究工作。对用于生产d-苯丙氨酸的d-氨基酸脱氢酶、d-氨基酸转氨酶和苯丙氨酸解氨酶的工程研究进行了全面考察,同时也讨论了它们在(化学)酶促级联反应中的应用。为了提高级联反应的效率,还探讨了对l-氨基酸脱氨酶和/或l-氨基酸氧化酶进行蛋白质工程改造以提高苯丙氨酸转化效率的问题。