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Simple Method To Prepare Oligonucleotide-Conjugated Antibodies and Its Application in Multiplex Protein Detection in Single Cells

机译:寡核苷酸缀合抗体的简单制备方法及其在单细胞多重蛋白检测中的应用

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摘要

The diversity of nucleic acid sequences enables genomics studies in a highly multiplexed format. Since multiplex protein detection is still a challenge, it would be useful to use genomics tools for this purpose. This can be accomplished by conjugating specific oligonucleotides to antibodies. Upon binding of the oligonucleotide-conjugated antibodies to their targets, the protein levels can be converted to oligonucleotide levels. In this report we describe a simple method for preparing oligonucleotide-conjugated antibodies and discuss this methods application in oligonucleotide extension reaction (OER) for multiplex protein detection. Conjugation is based on strain-promoted alkyne-azide cycloaddition (the Cu-free click reaction), in which the antibody is activated with a dibenzocyclooctyne (DBCO) moiety and subsequently linked covalently with an azide-modified oligonucleotide. In the functional test, the reaction conditions and purification processes were optimized to achieve maximum yield and best performance. The OER assay employs a pair of antibody binders (two antibodies, each conjugated with its own oligonucleotide) developed for each protein target. The two oligonucleotides contain unique six-base complementary regions at their 3' prime ends to allow annealing and extension by DNA synthesis enzymes to form a DNA template. Following preamplification, the DNA template is detected by qPCR. Distinct oligonucleotide sequences are assigned to different antibody binders to enable multiplex protein detection. When tested using recombinant proteins, some antibody binders, such as those specific to CSTB, MET, EpCAM, and CASP3, had dynamic ranges of 5-6 logs. The antibody binders were also used in a multiplexed format in OER assays, and the binders successfully detected their protein targets in cell lysates, and in single cells in combination with the C1 system. This click reaction-based antibody conjugation procedure is cost-effective, needs minimal hands-on time, and is well-suited for the development of affordable multiplex protein assays, which provides the potential to accelerate proteomics research.
机译:核酸序列的多样性使基因组学研究成为高度多元化的形式。由于多重蛋白检测仍然是一个挑战,因此使用基因组学工具进行此操作将很有用。这可以通过将特异性寡核苷酸与抗体缀合来实现。在寡核苷酸缀合的抗体与其靶标结合后,蛋白质水平可以转化为寡核苷酸水平。在本报告中,我们描述了一种制备寡核苷酸缀合抗体的简单方法,并讨论了该方法在寡核苷酸延伸反应(OER)中用于多重蛋白检测的应用。缀合基于应变促进的炔-叠氮化物环加成(无铜点击反应),其中抗体被二苯并环辛炔(DBCO)部分激活,随后与叠氮化物修饰的寡核苷酸共价连接。在功能测试中,对反应条件和纯化工艺进行了优化,以实现最高收率和最佳性能。 OER分析采用针对每种蛋白质靶标开发的一对抗体结合剂(两种抗体,每种均与自己的寡核苷酸偶联)。两种寡核苷酸在其3'末端均包含独特的六碱基互补区域,以允许DNA合成酶退火和延伸以形成DNA模板。预扩增后,通过qPCR检测DNA模板。将不同的寡核苷酸序列分配给不同的抗体结合剂,以进行多重蛋白检测。使用重组蛋白进行测试时,某些抗体结合物(例如对CSTB,MET,EpCAM和CASP3特异的结合物)的动态范围为5-6 log。抗体结合剂还以多重形式用于OER分析中,并且结合剂成功地在细胞裂解液中以及与C1系统结合的单细胞中成功检测了它们的蛋白质靶标。这种基于点击反应的抗体偶联程序具有成本效益,需要最少的动手时间,并且非常适合开发可负担的多重蛋白质测定法,这为加速蛋白质组学研究提供了可能。

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