双荧光素酶法评价基于vhh的抗cd19 SynNotch受体的配体非依赖性激活

IF 4.1 Q2 CHEMISTRY, ANALYTICAL
Yasaman Asaadi, Fatemeh Rahbarizadeh
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引用次数: 0

摘要

配体独立激活对合成受体提出了重大挑战,限制了它们的动态范围。鉴于在许多研究中评估这一关键方面的困难和不一致,我们使用双荧光素酶测定来评估SynNotch受体的背景活性。这些受体是模块化的正交结构,旨在通过表达目标蛋白来检测和响应特定的细胞外信号。在这项研究中,我们利用骆驼类vhh的优势特性,通过将纳米体结合到抗原结合区域,设计了一种抗cd19 SynNotch受体。然后,我们评估了最终结构的性能,重点关注其功能和使用双荧光素酶测定的非配体激活。结果显示,尽管在抗原存在下报告基因的表达显著增加,但背景基因的表达水平也很高,这可能会阻碍SynNotch受体的功能。此外,SynNotch受体在对抗原的反应中达到峰值激活水平有24小时的延迟,在没有抗原的情况下恢复到基线水平。因此,SynNotch结构的优化对于提高受体的动态范围至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evaluation of the Ligand-Independent Activation of a VHH-Based Anti-CD19 SynNotch Receptor by Dual-Luciferase Assay

Evaluation of the Ligand-Independent Activation of a VHH-Based Anti-CD19 SynNotch Receptor by Dual-Luciferase Assay

Ligand-independent activation poses a significant challenge for synthetic receptors, limiting their dynamic range. Given the difficulties and inconsistencies in evaluating this crucial aspect in many studies, we utilized a dual-luciferase assay to assess the background activity of the SynNotch receptor. These receptors are modular, orthogonal constructs designed to detect and respond to specific extracellular signals by expressing a targeted protein. In this study, we engineered an anti-CD19 SynNotch receptor by incorporating a nanobody into the antigen-binding domain, leveraging the advantageous properties of camelid VHHs. We then evaluated the performance of the final construct, focusing on its functionality and ligand-independent activation using the dual-luciferase assay. The results revealed that although reporter expression significantly increased in the presence of the antigen, there was also a high level of background expression, which could hinder the performance of the SynNotch receptor. Additionally, the SynNotch receptor exhibited a 24-h delay in reaching its peak activation level in response to the antigen and in returning to baseline levels in its absence. Therefore, the optimization of the SynNotch construct is essential to enhance the receptor's dynamic range.

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CiteScore
4.60
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