Poda Suresh B, Kobayashi Masakazu, Nachane Ruta, Menon Veena, Gandhi Adarsh S, Budac David P, Li Guiying, Campbell Brian M, Tagmose Lena
1 Neuroinflammation Biology DBU, Lundbeck Research USA, Inc. , Paramus, New Jersey.
2 Structural Biology , ZoBio. BV, Leiden, The Netherlands .
Assay Drug Dev Technol. 2015 Oct;13(8):466-75. doi: 10.1089/adt.2015.649. Epub 2015 Aug 20.
Kynurenine 3-monooxygenase (KMO), a pivotal enzyme in the kynurenine pathway, was identified as a potential therapeutic target for treating neurodegenerative and psychiatric disorders. In this article, we describe a surface plasmon resonance (SPR) assay that delivers both kinetics and the mechanism of binding (MoB) data, enabling a detailed characterization of KMO inhibitors for the enzyme in real time. SPR assay development included optimization of the protein construct and the buffer conditions. The stability and inhibitor binding activity of the immobilized KMO were significantly improved when the experiments were performed at 10°C using a buffer containing 0.05% n-dodecyl-β-d-maltoside (DDM) as the detergent. The KD values of the known KMO inhibitors (UPF648 and RO61-8048) from the SPR assay were in good accordance with the biochemical LC/MS/MS assay. Also, the SPR assay was able to differentiate the binding kinetics (k(a) and k(d)) of the selected unknown KMO inhibitors. For example, the inhibitors that showed comparable IC50 values in the LC/MS/MS assay displayed differences in their residence time (τ = 1/k(d)) in the SPR assay. To better define the MoB of the inhibitors to KMO, an SPR-based competition assay was developed, which demonstrated that both UPF648 and RO61-8048 bound to the substrate-binding site. These results demonstrate the potential of the SPR assay for characterizing the affinity, the kinetics, and the MoB profiles of the KMO inhibitors.
犬尿氨酸3-单加氧酶(KMO)是犬尿氨酸途径中的关键酶,被确定为治疗神经退行性疾病和精神疾病的潜在治疗靶点。在本文中,我们描述了一种表面等离子体共振(SPR)分析方法,该方法可提供动力学和结合机制(MoB)数据,从而能够实时详细表征KMO酶的抑制剂。SPR分析方法的开发包括蛋白质构建体和缓冲液条件的优化。当在10°C下使用含有0.05%正十二烷基-β-D-麦芽糖苷(DDM)作为去污剂的缓冲液进行实验时,固定化KMO的稳定性和抑制剂结合活性得到显著提高。SPR分析中已知KMO抑制剂(UPF648和RO61-8048)的KD值与生化LC/MS/MS分析结果高度一致。此外,SPR分析能够区分所选未知KMO抑制剂的结合动力学(k(a)和k(d))。例如,在LC/MS/MS分析中显示出相当IC50值的抑制剂在SPR分析中的停留时间(τ = 1/k(d))存在差异。为了更好地定义抑制剂与KMO的MoB,开发了一种基于SPR的竞争分析方法,该方法表明UPF648和RO61-8048均与底物结合位点结合。这些结果证明了SPR分析在表征KMO抑制剂的亲和力、动力学和MoB谱方面的潜力。