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首页> 外文期刊>Journal of pharmaceutical sciences. >Probing bis-ANS Binding Sites of Different Affinity on Aggregated IgG by Steady-State Fluorescence, Time-Resolved Fluorescence and Isothermal Titration Calorimetry
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Probing bis-ANS Binding Sites of Different Affinity on Aggregated IgG by Steady-State Fluorescence, Time-Resolved Fluorescence and Isothermal Titration Calorimetry

机译:通过稳态荧光,时间分辨荧光和等温滴定量热法探测聚集的IgG上不同亲和力的bis-ANS结合位点

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摘要

Fluorescent dyes, for example, 4,4'-dianilino-l,l'-binaphthyl-5,5'-disulfonic acid dipotassium salt (bis-ANS) are extensively used to detect nonnative protein structures in therapeutic protein products, for example, during formulation development by monitoring the greatly enhanced dye fluorescence upon binding to nonnative species. Our aim was to characterize the level of heterogeneity of bis-ANS binding sites in a thermally stressed monoclonal antibody (IgG) formulation by steady-state fluorescence, time-resolved fluorescence and isothermal titration calorimetry (ITC), and to obtain apparent dissociation constants (K_d) by data fitting. Because the methods differ in their underlying measurement principles, they provide different information on binding properties of bis-ANS to thermally stressed IgG. We found very heterogeneous bis-ANS binding sites on thermally stressed IgG, with apparent Kd values ranging from as low as 50 nM (time-resolved fluorescence) to 63 |iM (ITC). Steady-state fluorescence and ITC gave insight into an overall binding affinity of a wide population of dye binding sites with micro-molar Kd values. Time-resolved fluorescence was particularly sensitive to high-affinity binding sites with nanomolar K_ds. The heterogeneity of the bis-ANS binding sites reflects the complex, heterogeneous nature of the heat-stressed IgG used in this study. To probe such heterogeneity adequately, one should apply complementary analytical methods under various experimental conditions as presented in this paper.
机译:荧光染料,例如4,4'-dianilino-1,1'-联萘基-5,5'-二磺酸二钾盐(bis-ANS)被广泛用于检测治疗性蛋白质产品中的非天然蛋白质结构,例如,在制剂开发过程中,通过监测与非天然物质结合后大大增强的染料荧光,可以检测染料的荧光。我们的目的是通过稳态荧光,时间分辨荧光和等温滴定量热(ITC)表征热应激单克隆抗体(IgG)制剂中bis-ANS结合位点的异质性水平,并获得表观解离常数( K_d)。由于这些方法的基本测量原理不同,因此它们提供了有关bis-ANS与热应激IgG结合特性的不同信息。我们在热应激IgG上发现非常异质的bis-ANS结合位点,其表观Kd值范围从低至50 nM(时间分辨荧光)到63 | iM(ITC)。稳态荧光和ITC使人们深入了解了具有微摩尔Kd值的大量染料结合位点的整体结合亲和力。时间分辨荧光对纳摩尔K_ds的高亲和力结合位点特别敏感。 bis-ANS结合位点的异质性反映了本研究中使用的热应激IgG的复杂,异质性。为了充分探究这种异质性,应在本文介绍的各种实验条件下应用互补的分析方法。

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