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Synthesis, characterization and target protein binding of drug-conjugated quantum dots in vitro and in living cells

机译:体外和活细胞中药物结合的量子点的合成,表征和靶蛋白结合

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Elucidation of unknown target proteins of a drug is of great importance in understanding cell biology and drug discovery. There have been extensive studies to discover and identify target proteins in the cell. Visualization of targets using drug-conjugated probes has been an important approach to gathering mechanistic information of drug action at the cellular level. As quantum dot (QD) nanocrystals have attracted much attention as a fluorescent probe in the bioimaging area, we prepared drug-conjugated QD to explore the potential of target discovery. As a model drug, we selected a well-known anticancer drug, methotrexate (MTX), which has been known to target dihydrofolate reductase (DHFR) with high affinity binding (K_d = 0.54 nM). MTX molecules were covalently attached to amino-PEG-polymer-coated QDs. Specific interactions of MTX-conjugated QDs with DHFR were identified using agarose gel electrophoresis and fluorescence microscopy. Cellular uptake of the MTX-conjugated QDs in living CHO cells was investigated with regard to their localization and distribution pattern. MTX-QD was found to be internalized into the cells via caveolae-medicated endocytosis without significant sequestration in endosomes. A colocalization experiment of the MTX-QD conjugate with antiDHFR-TAT-QD also confirmed that MTX-QD binds to the target DHFR. This study showed the potential of the drug-QD conjugate to identify or visualize drug-target interactions in the cell, which is currently of great importance in the area of drug discovery and chemical biology.
机译:阐明药物的未知靶蛋白对于了解细胞生物学和药物发现非常重要。已经进行了广泛的研究以发现和鉴定细胞中的靶蛋白。使用药物偶联探针对靶标进行可视化已成为在细胞水平上收集药物作用机理信息的重要方法。由于量子点(QD)纳米晶体作为生物成像领域的荧光探针已引起人们的广泛关注,我们准备了药物偶联的QD来探索目标发现的潜力。作为模型药物,我们选择了著名的抗癌药物氨甲蝶呤(MTX),已知该药物靶向具有高亲和力结合(K_d = 0.54 nM)的二氢叶酸还原酶(DHFR)。将MTX分子共价附于氨基-PEG-聚合物包被的QD。使用琼脂糖凝胶电泳和荧光显微镜鉴定了MTX共轭QDs与DHFR的特异性相互作用。关于它们在活CHO细胞中的定位和分布模式,研究了MTX共轭QD在细胞中的摄取。发现MTX-QD通过小窝药物介导的胞吞作用被内化到细胞中,而内体没有明显的隔离。 MTX-QD偶联物与抗DHFR-TAT-QD的共定位实验也证实MTX-QD与目标DHFR结合。这项研究表明了药物-量子点缀合物识别或可视化细胞中药物-靶标相互作用的潜力,这在药物发现和化学生物学领域目前非常重要。

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