遗传密码扩展驱动的原位点击标记使基于快速成像的功能性纳米体染料偶联物选择成为可能。

IF 1.3 4区 医学 Q4 CHEMISTRY, MEDICINAL
Naoki Seike, Ryosuke Kojima, Ryo Tachibana, Kyohhei Fujita, Tatsuo Yanagisawa, Shigeyuki Yokoyama, Yasuteru Urano
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引用次数: 0

摘要

抗原结合蛋白,如纳米体,被功能性小分子修饰,在成像探针、药物偶联物和局部催化剂等方面具有巨大的应用潜力。然而,传统的随机定位赖氨酸或半胱氨酸残基的化学标记方法往往产生非均相偶联物,重现性有限。传统的位点特异性偶联方法,通常只修饰N或c端,也可能不足以实现所需的功能。遗传密码扩展提供了一种强大的替代方法,它使具有反应性把手的非规范氨基酸(如反式环烯(TCO))能够在特定位点结合,从而允许通过点击化学进行精确的生物正交偶联。然而,在不破坏抗原结合的情况下,确定耐受这种修饰的合适的结合位点仍然是一个时间和成本密集型的过程,因为这个过程通常需要劳动密集型的筛选,包括每个候选变体的表达和纯化。在这里,我们使用HER2和抗HER2纳米体作为模型抗原结合对,提出了一个方便的基于哺乳动物细胞的筛选平台,用于快速,无需纯化的评估位点特异性标记的纳米体。纳米体与HEK293T细胞分泌的蓝色荧光蛋白(BFP)融合,并用四氮荧光素探针原位标记。然后将得到的上清直接作用于稳定表达HER2-mCherry的HEK293T细胞。在BFP、荧光素和mCherry通道中,通过荧光成像同时评估标记效率和抗原结合活性的保留。这种方法可以有效地识别支持生产性点击共轭的标记位点,同时保留绑定功能。它应该广泛适用于其他抗原和结合物,简化早期筛选工程抗原-结合物的不同应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic Code Expansion-Driven in Situ Click Labeling Enables Rapid Imaging-Based Selection of Functional Nanobody-Dye Conjugates.

Antigen-binding proteins, such as nanobodies, modified with functional small molecules hold great potential for applications including imaging probes, drug conjugates, and localized catalysts. However, traditional chemical labeling methods that randomly target lysine or cysteine residues often produce heterogeneous conjugates with limited reproducibility. Conventional site-specific conjugation approaches, which typically modify only the N- or C-terminus, may also be insufficient to achieve the desired functionalities. Genetic code expansion offers a powerful alternative by enabling the site-specific incorporation of noncanonical amino acids bearing reactive handles-such as trans-cyclooctene (TCO)-thereby allowing precise bioorthogonal conjugation via click chemistry. Nevertheless, identifying suitable incorporation sites that tolerate such modifications without disrupting antigen binding remains a time- and cost-intensive process, as this process typically requires labor-intensive screening involving the expression and purification of each candidate variant. Here, using HER2 and an anti-HER2 nanobody as a model antigen-binder pair, we present a convenient mammalian cell-based screening platform for rapid, purification-free evaluation of site-specifically labeled nanobodies. The nanobody is fused to blue fluorescent protein (BFP), secreted by HEK293T cells, and labeled in situ with a tetrazine-fluorescein probe. The resulting supernatant is then applied directly to HEK293T cells stably expressing HER2-mCherry. Labeling efficiency and retention of antigen-binding activity are simultaneously assessed by fluorescence imaging in the BFP, fluorescein, and mCherry channels. This approach enables efficient identification of labeling sites that support productive click conjugation while preserving binding function. It should be broadly applicable to other antigens and binders, streamlining early-stage screening of engineered antigen-binder conjugates for diverse applications.

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来源期刊
CiteScore
3.20
自引率
5.90%
发文量
132
审稿时长
1.7 months
期刊介绍: The CPB covers various chemical topics in the pharmaceutical and health sciences fields dealing with biologically active compounds, natural products, and medicines, while BPB deals with a wide range of biological topics in the pharmaceutical and health sciences fields including scientific research from basic to clinical studies. For details of their respective scopes, please refer to the submission topic categories below. Topics: Organic chemistry In silico science Inorganic chemistry Pharmacognosy Health statistics Forensic science Biochemistry Pharmacology Pharmaceutical care and science Medicinal chemistry Analytical chemistry Physical pharmacy Natural product chemistry Toxicology Environmental science Molecular and cellular biology Biopharmacy and pharmacokinetics Pharmaceutical education Chemical biology Physical chemistry Pharmaceutical engineering Epidemiology Hygiene Regulatory science Immunology and microbiology Clinical pharmacy Miscellaneous.
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