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无赖氨酸HiBiT和纳米荧光素酶标记系统作为监测靶向蛋白质降解的替代工具。

Lysineless HiBiT and NanoLuc Tagging Systems as Alternative Tools Monitoring Targeted Protein Degradation.

作者信息

Lin Hanfeng, Riching Kristin, Lai May Poh, Lu Dong, Cheng Ran, Qi Xiaoli, Wang Jin

出版信息

bioRxiv. 2024 May 17:2024.05.14.594249. doi: 10.1101/2024.05.14.594249.

Abstract

Target protein degradation (TPD) has emerged as a revolutionary approach in drug discovery, leveraging the cell's intrinsic machinery to selectively degrade disease-associated proteins. Proteolysis-Targeting Chimeras (PROTACs) exemplify this strategy, exploiting heterobifunctional molecules to induce ubiquitination and subsequent degradation of target proteins. The clinical advancement of PROTACs underscores their potential in therapeutic intervention, with numerous projects progressing through clinical stages. However, monitoring subtle changes in protein abundance induced by TPD molecules demands highly sensitive assays. Nano-luciferase (nLuc) fusion proteins, or the NanoBiT technology derived from it, offer a robust screening platform due to their high sensitivity and stability. Despite these advantages, concerns have arisen regarding potential degradation artifacts introduced by tagging systems due to the presence of lysine residues on them, prompting the development of alternative tools. In this study, we introduce HiBiT-RR and nLuc , variants devoid of lysine residues, to mitigate such artifacts. Our findings demonstrate that HiBiT-RR maintains similar sensitivity and binding affinity with the original HiBiT. Moreover, the comparison between nLuc and nLuc constructs reveals variations in degradation patterns induced by certain PROTAC molecules, emphasizing the importance of choosing appropriate tagging systems to ensure the reliability of experimental outcomes in studying protein degradation processes.

摘要

靶向蛋白降解(TPD)已成为药物发现中的一种革命性方法,它利用细胞的内在机制来选择性降解与疾病相关的蛋白质。蛋白酶靶向嵌合体(PROTACs)就是这一策略的典型代表,它利用异双功能分子诱导靶蛋白的泛素化及随后的降解。PROTACs的临床进展突显了其在治疗干预方面的潜力,众多项目正处于临床阶段。然而,监测TPD分子诱导的蛋白质丰度的细微变化需要高度灵敏的检测方法。纳米荧光素酶(nLuc)融合蛋白或由此衍生的纳米生物发光技术(NanoBiT),因其高灵敏度和稳定性而提供了一个强大的筛选平台。尽管有这些优点,但由于标记系统上存在赖氨酸残基,人们对其可能引入的潜在降解假象产生了担忧,这促使了替代工具的开发。在本研究中,我们引入了不含赖氨酸残基的HiBiT-RR和nLuc变体,以减轻此类假象。我们的研究结果表明,HiBiT-RR与原始的HiBiT保持相似的灵敏度和结合亲和力。此外,nLuc和nLuc构建体之间的比较揭示了某些PROTAC分子诱导的降解模式的差异,强调了选择合适的标记系统以确保在研究蛋白质降解过程中实验结果可靠性的重要性。

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