运输机
有机阳离子转运蛋白
生物
ATP结合盒运输机
溶质载体族
细胞毒性T细胞
抗药性
药品
化学空间
药理学
计算生物学
跨膜蛋白
药物发现
化学
生物化学
遗传学
基因
体外
受体
作者
Enrico Girardi,Adrián César‐Razquin,Sabrina Lindinger,Κωνσταντίνος Παπακώστας,Justyna Konecka,Jennifer Hemmerich,Stefanie Kickinger,Felix Kartnig,Bettina Gürtl,Kristaps Klavins,Vitaly Sedlyarov,Álvaro Inglés‐Prieto,Giuseppe Fiume,Anna Koren,Charles-Hugues Lardeau,Richard K. Kandasamy,Stefan Kubicek,Gerhard F. Ecker,Giulio Superti‐Furga
标识
DOI:10.1038/s41589-020-0483-3
摘要
Solute carriers (SLCs) are the largest family of transmembrane transporters in humans and are major determinants of cellular metabolism. Several SLCs have been shown to be required for the uptake of chemical compounds into cellular systems, but systematic surveys of transporter–drug relationships in human cells are currently lacking. We performed a series of genetic screens in a haploid human cell line against 60 cytotoxic compounds representative of the chemical space populated by approved drugs. By using an SLC-focused CRISPR–Cas9 library, we identified transporters whose absence induced resistance to the drugs tested. This included dependencies involving the transporters SLC11A2/SLC16A1 for artemisinin derivatives and SLC35A2/SLC38A5 for cisplatin. The functional dependence on SLCs observed for a significant proportion of the screened compounds suggests a widespread role for SLCs in the uptake and cellular activity of cytotoxic drugs and provides an experimentally validated set of SLC–drug associations for a number of clinically relevant compounds. A set of CRISPR–Cas9-based genetic screens in a haploid human cell line identifies more than 200 gene–drug associations involving solute carriers (SLCs), transporters important for the uptake and activity of cytotoxic drugs.
科研通智能强力驱动
Strongly Powered by AbleSci AI