Tomoiagă Raluca Bianca, Ursu Marcel, Boros Krisztina, Nagy Levente Csaba, Bencze László Csaba
Enzymology and Applied Biocatalysis Research Center, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, Arany János Street 11, Cluj-Napoca RO-400028, Romania.
Enzymology and Applied Biocatalysis Research Center, Faculty of Chemistry and Chemical Engineering, Babeș-Bolyai University, Arany János Street 11, Cluj-Napoca RO-400028, Romania.
J Biotechnol. 2023 Nov 20;377:43-52. doi: 10.1016/j.jbiotec.2023.10.006. Epub 2023 Oct 27.
In this study we assessed the applicability of the recently reported ancestral l-amino acid oxidase (AncLAAO), for the development of an enzyme-coupled phenylalanine ammonia-lyase (PAL) activity assay. Firstly, the expression and isolation of the AncLAAO-N1 was optimized, followed by activity tests of the obtained octameric N-terminal His-tagged enzyme towards various phenylalanine analogues to assess the compatibility of its substrate scope with that of the well-characterized PALs. AncLAAO-N1 showed high catalytic efficiency towards phenylalanines mono-, di-, or multiple-substituted in the meta- or para-positions, with ortho- substituted substrates being poorly transformed, these results highlighting the significant overlap between its substrate scope and those of PALs. After successful set-up of the AncLAAO-PAL coupled solid phase assay, in a 'proof of concept' approach we demonstrated its applicability for the high-throughput activity screens of PAL-libraries, by screening the saturation mutagenesis-derived I460NNK variant library of PAL from Petroselinum crispum, using p-MeO-phenylalanine as model substrate. Notably, the hits revealed by the coupled assay comprised all the active PAL variants: I460V, I460T, I460S, I460L, previously identified from the tested PAL-library by other assays. Our results validate the applicability of AncLAAO for coupled enzyme systems with phenylalanine ammonia-lyases, including cell-based assays suitable for the high-throughput screening of directed evolution-derived PAL-libraries.
在本研究中,我们评估了最近报道的祖先L-氨基酸氧化酶(AncLAAO)在开发酶联苯丙氨酸解氨酶(PAL)活性测定方法中的适用性。首先,对AncLAAO-N1的表达和分离进行了优化,随后对获得的八聚体N端带有His标签的酶针对各种苯丙氨酸类似物进行活性测试,以评估其底物范围与已充分表征的PALs底物范围的兼容性。AncLAAO-N1对间位或对位单取代、双取代或多取代的苯丙氨酸显示出高催化效率,而邻位取代的底物转化效果较差,这些结果突出了其底物范围与PALs底物范围之间的显著重叠。在成功建立AncLAAO-PAL偶联固相测定法后,我们采用“概念验证”方法,以对甲氧基苯丙氨酸为模型底物,通过筛选来自皱叶欧芹的PAL饱和诱变衍生的I460NNK变体文库,证明了其在PAL文库高通量活性筛选中的适用性。值得注意的是,偶联测定法揭示的命中结果包括所有活性PAL变体:I460V、I460T、I460S、I460L,这些变体先前已通过其他测定法从测试的PAL文库中鉴定出来。我们的结果验证了AncLAAO在与苯丙氨酸解氨酶的偶联酶系统中的适用性,包括适用于对定向进化衍生PAL文库进行高通量筛选的基于细胞的测定法。