Liang Jing, Han Qian, Tan Yang, Ding Haizhen, Li Jianyong
Department of Biochemistry, Virginia Polytechnic Institute and State University, Blacksburg, VA, United States.
Laboratory of Tropical Veterinary Medicine and Vector Biology, Hainan Key Laboratory of Sustainable Utilization of Tropical Bioresources, Institute of Agriculture and Forestry, Hainan University, Haikou, China.
Front Mol Biosci. 2019 Mar 5;6:4. doi: 10.3389/fmolb.2019.00004. eCollection 2019.
Pyridoxal 5'-phosphate (PLP) functions as a coenzyme in many enzymatic processes, including decarboxylation, deamination, transamination, racemization, and others. Enzymes, requiring PLP, are commonly termed PLP-dependent enzymes, and they are widely involved in crucial cellular metabolic pathways in most of (if not all) living organisms. The chemical mechanisms for PLP-mediated reactions have been well elaborated and accepted with an emphasis on the pure chemical steps, but how the chemical steps are processed by enzymes, especially by functions of active site residues, are not fully elucidated. Furthermore, the specific mechanism of an enzyme in relation to the one for a similar class of enzymes seems scarcely described or discussed. This discussion aims to link the specific mechanism described for the individual enzyme to the same types of enzymes from different species with aminotransferases, decarboxylases, racemase, aldolase, cystathionine β-synthase, aromatic phenylacetaldehyde synthase, et al. as models. The structural factors that contribute to the reaction mechanisms, particularly active site residues critical for dictating the reaction specificity, are summarized in this review.
磷酸吡哆醛(PLP)在许多酶促过程中作为辅酶发挥作用,包括脱羧、脱氨、转氨、消旋化等。需要PLP的酶通常被称为PLP依赖性酶,它们广泛参与大多数(如果不是全部)生物体中关键的细胞代谢途径。PLP介导反应的化学机制已得到充分阐述并被接受,重点在于纯化学步骤,但这些化学步骤是如何由酶处理的,特别是活性位点残基的功能,尚未完全阐明。此外,一种酶相对于一类相似酶的具体机制似乎很少被描述或讨论。本讨论旨在将针对单个酶描述的具体机制与来自不同物种的相同类型酶联系起来,以转氨酶、脱羧酶、消旋酶、醛缩酶、胱硫醚β-合酶、芳香族苯乙醛合酶等为模型。本综述总结了有助于反应机制的结构因素,特别是决定反应特异性的关键活性位点残基。