Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL 32827, USA.
Department of Molecular Biology, Center of Exact and Natural Sciences, Federal University of Paraiba, João Pessoa 58051-900, PB, Brazil.
Molecules. 2022 Jul 24;27(15):4726. doi: 10.3390/molecules27154726.
The strain CPMOR-1 expresses a flavin adenine dinucleotide (FAD)-dependent L-amino acid oxidase (LAAO) with broad substrate specificity. Steady-state kinetic analysis of its reactivity towards the 20 proteinogenic amino acids showed some activity to all except proline. The relative specific activity for amino acid substrates was not correlated only with or values, since the two parameters often varied independently of each other. Variation in was attributed to the differential binding affinity. Variation in was attributed to differential positioning of the bound substrate relative to FAD that decreased the reaction rate. A structural model of this LAAO was compared with structures of other FAD-dependent LAAOs that have different substrate specificities: an LAAO from snake venom that prefers aromatic amino acid substrates and a fungal LAAO that is specific for lysine. While the amino acid sequences of these LAAOs are not very similar, their overall structures are comparable. The differential activity towards specific amino acids was correlated with specific residues in the active sites of these LAAOs. Residues in the active site that interact with the amino and carboxyl groups attached to the α-carbon of the substrate amino acid are conserved in all of the LAAOs. Residues that interact with the side chains of the amino acid substrates show variation. This provides insight into the structural determinants of the LAAOs that dictate their different substrate preferences. These results are of interest for harnessing these enzymes for possible applications in biotechnology, such as deracemization.
CPMOR-1 菌株表达黄素腺嘌呤二核苷酸 (FAD) 依赖性 L-氨基酸氧化酶 (LAAO),具有广泛的底物特异性。对其 20 种蛋白质氨基酸的反应性进行稳态动力学分析表明,除脯氨酸外,所有氨基酸都有一定的活性。氨基酸底物的相对比活性不仅与 或 值相关,因为这两个参数经常彼此独立变化。 值的变化归因于结合亲和力的差异。 值的变化归因于结合底物相对于 FAD 的位置不同,从而降低了反应速率。将该 LAAO 的结构模型与具有不同底物特异性的其他 FAD 依赖性 LAAO 的结构进行了比较:一种来自蛇毒的 LAAO,优先选择芳香族氨基酸底物,一种真菌 LAAO,特异性针对赖氨酸。尽管这些 LAAO 的氨基酸序列不太相似,但它们的整体结构具有可比性。对特定氨基酸的不同活性与这些 LAAO 的活性部位的特定残基相关。与底物氨基酸的α-碳上连接的氨基和羧基相互作用的活性部位的残基在所有 LAAO 中都是保守的。与氨基酸底物侧链相互作用的残基存在差异。这为 LAAO 的结构决定因素提供了深入了解,这些决定因素决定了它们不同的底物偏好。这些结果对于利用这些酶在生物技术中可能的应用(如外消旋化)具有重要意义。