Department of Chemistry and Biochemistry, Augusta University, 1120 15th Street, Augusta, GA 30912, USA.
Chembiochem. 2024 Aug 19;25(16):e202400369. doi: 10.1002/cbic.202400369. Epub 2024 Aug 2.
Homologation of amino acids is the insertion or deletion of a methylene group to their side chain, which is a relatively uncommon chemical transformation observed in peptide natural product (NP) structure. Homologated amino acids can potentially make the NP more stable in a biological system, but its biosynthesis is yet to be understood. This study biochemically characterized the first of three unexplored enzymes in the homologation pathway of l-phenylalanine and l-tyrosine. Previously proposed reactions catalyzed by HphA were confirmed by reversed-phase high-performance liquid chromatography and tandem mass spectrometry analysis. The substrate profile and kinetic parameters showed high selectivity for the natural substrates and their close analogs. The comparability of HphA to homologous enzymes in primary metabolic pathways, 2-isopropylmate synthase and homocitrate synthase which are involved in l-leucine and l-lysine biosynthesis, respectively, was validated by bioinformatical and site-directed mutagenesis studies. The knowledge obtained from this study has deepened the understanding of the homologation of amino acids, which can lead to future combinatorial biosynthesis and metabolic engineering studies.
氨基酸的同系化是在其侧链上插入或删除一个亚甲基基团,这是在肽天然产物 (NP) 结构中观察到的一种相对不常见的化学转化。同系化氨基酸可以潜在地使 NP 在生物系统中更稳定,但它的生物合成尚未被理解。本研究从 l-苯丙氨酸和 l-酪氨酸同系化途径中未探索的三种酶中,首次对其进行了生物化学表征。通过反相高效液相色谱和串联质谱分析,证实了先前提出的由 HphA 催化的反应。底物谱和动力学参数显示对天然底物及其密切类似物具有高选择性。通过生物信息学和定点突变研究,验证了 HphA 与参与 l-亮氨酸和 l-赖氨酸生物合成的同工酶 2-异丙基苹果酸合酶和同型柠檬酸合酶在初级代谢途径中的同源性。本研究获得的知识加深了对氨基酸同系化的理解,这可能导致未来的组合生物合成和代谢工程研究。