Key Laboratory of Laboratory Medical Diagnostics of Education, Ministry of Education, Department of Laboratory Medicine, Chongqing Medical University, Chongqing, Sichuan, 400016, People's Republic of China.
Department of Blood Transfusion, Affiliated Hospital of Zunyi Medical University, Zunyi, 563003, Guizhou, China.
Anal Bioanal Chem. 2021 Nov;413(28):6929-6939. doi: 10.1007/s00216-021-03659-z. Epub 2021 Sep 15.
Glycosylated PD-L1 is a more reliable biomarker for immune checkpoint therapy and plays important roles in tumor immunity. Glycosylation of PD-L1 hinders antibody-based detection, which is partially responsible for the inconsistency between PD-L1 immunohistochemical results and therapeutic treatment response. Herein, we present a proximity ligation assay mediated rolling circle amplification (PLA-RCA) strategy for amplified imaging of glycosylated PD-L1 in situ. The strategy relies on a pair of DNA probes: an aptamer probe to specifically recognize cellular surface protein PD-L1 and a glycan conversion (GC) probe for metabolic glycan labeling. Upon proximity ligation of sequence binding to the two probes, the proximity ligation-triggered RCA occurs. The feasibility of the as-proposed strategy has been validated as it realized the visualization of PD-L1 glycosylation in different cancer cells and the monitoring of the variation of PD-L1 glycosylation during drug treatment. Thus, we envision the present work offers a useful alternative to track protein-specific glycosylation and potentially advances the investigation of the dynamic glycan state associated with the disease process.
糖基化 PD-L1 是免疫检查点治疗更可靠的生物标志物,在肿瘤免疫中发挥重要作用。PD-L1 的糖基化会阻碍基于抗体的检测,这部分解释了 PD-L1 免疫组化结果与治疗反应之间的不一致性。在这里,我们提出了一种基于邻近连接介导的滚环扩增(PLA-RCA)的策略,用于在原位放大成像糖基化的 PD-L1。该策略依赖于一对 DNA 探针:一种适体探针,用于特异性识别细胞表面蛋白 PD-L1,一种糖基化转换(GC)探针,用于代谢糖标记。当两个探针的序列结合进行邻近连接时,就会发生邻近连接触发的 RCA。所提出策略的可行性已经得到验证,因为它实现了不同癌细胞中 PD-L1 糖基化的可视化,并监测了药物治疗过程中 PD-L1 糖基化的变化。因此,我们设想本工作为跟踪蛋白质特异性糖基化提供了一种有用的替代方法,并有可能推进与疾病过程相关的动态糖状态的研究。