Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai, One Gustave L. Levy Place, Box 1603, New York City, NY, 10029, USA.
Regeneron Pharmaceutical, 777 Old Saw Mill River Rd, Tarrytown, NY, 10591, USA.
Commun Biol. 2021 Feb 22;4(1):238. doi: 10.1038/s42003-021-01744-8.
Antibodies represent powerful tools to examine signal transduction pathways. Here, we present a strategy integrating multiple state-of-the-art methods to produce, validate, and utilize antibodies. Focusing on understudied synaptic proteins, we generated 137 recombinant antibodies. We used yeast display antibody libraries from the B cells of immunized rabbits, followed by FACS sorting under stringent conditions to identify high affinity antibodies. The antibodies were validated by high-throughput functional screening, and genome editing. Next, we explored the temporal dynamics of signaling in single cells. A subset of antibodies targeting opioid receptors were used to examine the effect of treatment with opiates that have played central roles in the worsening of the 'opioid epidemic.' We show that morphine and fentanyl exhibit differential temporal dynamics of receptor phosphorylation. In summary, high-throughput approaches can lead to the identification of antibody-based tools required for an in-depth understanding of the temporal dynamics of opioid signaling.
抗体是研究信号转导途径的有力工具。在这里,我们提出了一种整合多种最新方法的策略,用于产生、验证和利用抗体。我们专注于研究不足的突触蛋白,生成了 137 种重组抗体。我们使用来自免疫兔子 B 细胞的酵母展示抗体文库,然后在严格条件下通过 FACS 分选来鉴定高亲和力的抗体。通过高通量功能筛选和基因组编辑对抗体进行验证。接下来,我们探索了单个细胞中信号传递的时间动态。一组针对阿片受体的抗体被用于研究阿片类药物治疗的效果,这些药物在“阿片类药物流行”的恶化中起着核心作用。我们表明,吗啡和芬太尼表现出受体磷酸化的不同时间动态。总之,高通量方法可以鉴定出基于抗体的工具,这些工具对于深入了解阿片信号传递的时间动态是必需的。