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用匹鲁卡品进行化学基因组学研究确定C1orf115为药物外排的调节因子。

Chemical genomics with pyrvinium identifies C1orf115 as a regulator of drug efflux.

作者信息

Masud Sanna N, Chandrashekhar Megha, Aregger Michael, Tan Guihong, Zhang Xiaoyu, Mero Patricia, Pirman David A, Zaslaver Olga, Smolen Gromoslaw A, Lin Zhen-Yuan, Wong Cassandra J, Boone Charles, Gingras Anne-Claude, Montenegro-Burke J Rafael, Moffat Jason

机构信息

Department of Molecular Genetics, University of Toronto, Toronto, ON, Canada.

Donnelly Centre, Toronto, ON, Canada.

出版信息

Nat Chem Biol. 2022 Dec;18(12):1370-1379. doi: 10.1038/s41589-022-01109-0. Epub 2022 Aug 15.

Abstract

Pyrvinium is a quinoline-derived cyanine dye and an approved anti-helminthic drug reported to inhibit WNT signaling and have anti-proliferative effects in various cancer cell lines. To further understand the mechanism by which pyrvinium is cytotoxic, we conducted a pooled genome-wide CRISPR loss-of-function screen in the human HAP1 cell model. The top drug-gene sensitizer interactions implicated the malate-aspartate and glycerol-3-phosphate shuttles as mediators of cytotoxicity to mitochondrial complex I inhibition including pyrvinium. By contrast, perturbation of the poorly characterized gene C1orf115/RDD1 resulted in strong resistance to the cytotoxic effects of pyrvinium through dysregulation of the major drug efflux pump ABCB1/MDR1. Interestingly, C1orf115/RDD1 was found to physically associate with ABCB1/MDR1 through proximity-labeling experiments and perturbation of C1orf115 led to mis-localization of ABCB1/MDR1. Our results are consistent with a model whereby C1orf115 modulates drug efflux through regulation of the major drug exporter ABCB1/MDR1.

摘要

吡维铵是一种喹啉衍生的花青染料,也是一种已获批准的抗蠕虫药物,据报道它能抑制WNT信号传导,并对多种癌细胞系具有抗增殖作用。为了进一步了解吡维铵具有细胞毒性的机制,我们在人类HAP1细胞模型中进行了全基因组范围的CRISPR功能缺失筛选。最显著的药物-基因敏感剂相互作用表明,苹果酸-天冬氨酸穿梭和3-磷酸甘油穿梭是对包括吡维铵在内的线粒体复合物I抑制产生细胞毒性的介质。相比之下,对特征不明确的基因C1orf115/RDD1的干扰通过主要药物外排泵ABCB1/MDR1的失调,导致对吡维铵的细胞毒性产生强烈抗性。有趣的是,通过邻近标记实验发现C1orf115/RDD1与ABCB1/MDR1存在物理关联,并且对C1orf115的干扰导致ABCB1/MDR1的定位错误。我们的结果与一种模型一致,即C1orf115通过调节主要药物外排转运体ABCB1/MDR1来调节药物外排。

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