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Imaging reversal of multidrug resistance in living mice with bioluminescence: MDR1 P-glycoprotein transports coelenterazine

机译:成像逆转活体小鼠具有生物发光的多药耐药性:MDR1 P糖蛋白转运腔肠素

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摘要

Coelenterazine is widely distributed among marine organisms, producing bioluminescence by calcium-insensitive oxidation mediated by Renilla luciferase (Rluc) and calcium-dependent oxidation mediated by the photoprotein aequorin. Despite its abundance in nature and wide use of both proteins as reporters of gene expression and signal transduction, little is known about mechanisms of coelenterazine transport and cell permeation. Interestingly, coelenterazine analogues share structural and physiochemical properties of compounds transported by the multidrug resistance MDR1 P-glycoprotein (Pgp). Herein, we report that living cells stably transfected with a codon-humanized Rluc show coelenterazine-mediated bioluminescence in a highly MDR1 Pgp-modulated manner. In Pgp-expressing Rluc cells, low baseline bioluminescence could be fully enhanced (reversed) to non-Pgp matched control levels with potent and selective Pgp inhibitors. Therefore, using coelenterazine and noninvasive bioluminescence imaging in vivo, we could directly monitor tumor-specific Pgp transport inhibition in living mice. While enabling molecular imaging and high-throughput screening of drug resistance pathways, these data also raise concern for the indiscriminate use of Rluc and aequorin as reporters in intact cells or transgenic animals, wherein Pgp-mediated alterations in coelenterazine permeability may impact results.
机译:腔肠素在海洋生物中广泛分布,通过海肾荧光素酶(Rluc)介导的对钙不敏感的氧化和由光蛋白水母发光蛋白介导的钙依赖性氧化而产生生物发光。尽管其性质丰富且两种蛋白质均广泛用作基因表达和信号转导的报道分子,但关于腔肠素运输和细胞渗透的机制知之甚少。有趣的是,腔肠素类似物具有通过多药耐药性MDR1 P-糖蛋白(Pgp)转运的化合物的结构和物理化学特性。本文中,我们报道了用密码子人源化的Rluc稳定转染的活细胞以高MDR1 Pgp调节的方式显示腔肠素介导的生物发光。在表达Pgp的Rluc细胞中,低基线生物发光可以通过有效的和选择性的Pgp抑制剂完全增强(逆转)至非Pgp匹配的对照水平。因此,使用腔肠素和体内非侵入性生物发光成像,我们可以直接监测活体小鼠体内肿瘤特异性Pgp转运抑制。尽管可以进行分子成像和高通量筛选耐药性途径,但这些数据也引起人们对在完整细胞或转基因动物中随意使用Rluc和水母发光蛋白作为报告基因的担忧,其中Pgp介导的腔肠素渗透性改变可能会影响结果。

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