Department of Physiology, Faculty of Medicine, Semmelweis University, Budapest, Hungary; MTA-SE Laboratory of Molecular Physiology, Eötvös Loránd Research Network, Budapest, Hungary; Department of Internal Medicine and Hematology, Semmelweis University, Budapest, Hungary.
Department of Physiology, Faculty of Medicine, Semmelweis University, Budapest, Hungary.
J Biol Chem. 2021 Jan-Jun;296:100366. doi: 10.1016/j.jbc.2021.100366. Epub 2021 Feb 2.
Reliable measurement of ligand binding to cell surface receptors is of outstanding biological and pharmacological importance. Resonance energy transfer-based assays are powerful approaches to achieve this goal, but the currently available methods are hindered by the necessity of receptor tagging, which can potentially alter ligand binding properties. Therefore, we developed a tag-free system to measure ligand‒receptor interactions in live cells using the Gaussia luciferase (GLuc) as a bioluminescence resonance energy transfer donor. GLuc is as small as the commonly applied Nanoluciferase but has enhanced brightness, and its proper substrate is the frequently used coelenterazine. In our assay, bystander bioluminescence resonance energy transfer is detected between a GLuc-based extracellular surface biosensor and fluorescent ligands bound to their unmodified receptors. The broad spectrum of applications includes equilibrium and kinetic ligand binding measurements for both labeled and competitive unlabeled ligands, and the assay can be utilized for different classes of plasma membrane receptors. Furthermore, the assay is suitable for high-throughput screening, as evidenced by the identification of novel α adrenergic receptor ligands. Our data demonstrate that GLuc-based biosensors provide a simple, sensitive, and cost-efficient platform for drug characterization and development.
可靠地测量配体与细胞表面受体的结合对于生物学和药理学具有重要意义。基于共振能量转移的测定方法是实现这一目标的有力手段,但目前可用的方法受到受体标记的限制,因为受体标记可能会改变配体结合特性。因此,我们开发了一种无标记系统,使用 Gaussia 荧光素酶(GLuc)作为生物发光共振能量转移供体,在活细胞中测量配体-受体相互作用。GLuc 像常用的 Nanoluciferase 一样小,但亮度更高,其合适的底物是常用的腔肠素。在我们的测定中,通过基于 GLuc 的细胞外表面生物传感器与结合到其未修饰受体上的荧光配体之间的旁观者生物发光共振能量转移来检测配体与受体的结合。广泛的应用包括标记和非标记竞争性配体的平衡和动力学配体结合测量,并且该测定可用于不同类别的质膜受体。此外,该测定适用于高通量筛选,这一点已通过鉴定新型α肾上腺素能受体配体得到证实。我们的数据表明,基于 GLuc 的生物传感器为药物表征和开发提供了一个简单、灵敏且经济高效的平台。