Murtas Giulia, Sacchi Silvia, Valentino Mattia, Pollegioni Loredano
Dipartimento di Biotecnologie e Scienze della Vita, Università degli Studi dell'Insubria, Varese, Italy.
The Protein Factory, Politecnico di Milano and Università degli Studi dell'Insubria, Milan, Italy.
Front Mol Biosci. 2017 Dec 15;4:88. doi: 10.3389/fmolb.2017.00088. eCollection 2017.
D-amino acid oxidase catalyzes the oxidative deamination of D-amino acids. In the brain, the NMDA receptor coagonist D-serine has been proposed as its physiological substrate. In order to shed light on the mechanisms regulating D-serine concentration at the cellular level, we biochemically characterized human DAAO (hDAAO) in greater depth. In addition to clarify the physical-chemical properties of the enzyme, we demonstrated that divalent ions and nucleotides do not affect flavoenzyme function. Moreover, the definition of hDAAO substrate specificity demonstrated that D-cysteine is the best substrate, which made it possible to propose it as a putative physiological substrate in selected tissues. Indeed, the flavoenzyme shows a preference for hydrophobic amino acids, some of which are molecules relevant in neurotransmission, i.e., D-kynurenine, D-DOPA, and D-tryptophan. hDAAO shows a very low affinity for the flavin cofactor. The apoprotein form exists in solution in equilibrium between two alternative conformations: the one at higher affinity for FAD is favored in the presence of an active site ligand. This may represent a mechanism to finely modulate hDAAO activity by substrate/inhibitor presence. Taken together, the peculiar properties of hDAAO seem to have evolved in order to use this flavoenzyme in different tissues to meet different physiological needs related to D-amino acids.
D-氨基酸氧化酶催化D-氨基酸的氧化脱氨基反应。在大脑中,N-甲基-D-天冬氨酸受体协同激动剂D-丝氨酸被认为是其生理底物。为了在细胞水平上阐明调节D-丝氨酸浓度的机制,我们对人DAAO(hDAAO)进行了更深入的生化特性分析。除了阐明该酶的物理化学性质外,我们还证明二价离子和核苷酸不会影响黄素酶的功能。此外,hDAAO底物特异性的定义表明D-半胱氨酸是最佳底物,这使得我们有可能在特定组织中将其作为一种假定的生理底物提出。事实上,这种黄素酶对疏水性氨基酸表现出偏好,其中一些是与神经传递相关的分子,即D-犬尿氨酸、D-多巴和D-色氨酸。hDAAO对黄素辅因子的亲和力非常低。脱辅基蛋白形式在溶液中以两种交替构象之间的平衡存在:在活性位点配体存在的情况下,对FAD亲和力较高的构象更受青睐。这可能代表了一种通过底物/抑制剂的存在来精细调节hDAAO活性的机制。综上所述,hDAAO的特殊性质似乎是为了在不同组织中利用这种黄素酶来满足与D-氨基酸相关的不同生理需求而进化而来的。