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Systematic functional identification of cancer multi-drug resistance genes

Authors :
Peter R. Schofield
Man-Tat Lau
Jean Yang
David B. Langley
Thang M. Khuong
Danielle Nessem
Marina Pajic
Daniel Christ
Angela Chou
Jourdin R. Rouaen
Jamie B. Littleboy
Damien Nevoltris
Shila Ghazanfar
G. Gregory Neely
Ashleigh Parkin
Source :
Genome Biology, Vol 21, Iss 1, Pp 1-12 (2020), Genome Biology
Publication Year :
2020
Publisher :
BMC, 2020.

Abstract

Background Drug resistance is a major obstacle in cancer therapy. To elucidate the genetic factors that regulate sensitivity to anti-cancer drugs, we performed CRISPR-Cas9 knockout screens for resistance to a spectrum of drugs. Results In addition to known drug targets and resistance mechanisms, this study revealed novel insights into drug mechanisms of action, including cellular transporters, drug target effectors, and genes involved in target-relevant pathways. Importantly, we identified ten multi-drug resistance genes, including an uncharacterized gene C1orf115, which we named Required for Drug-induced Death 1 (RDD1). Loss of RDD1 resulted in resistance to five anti-cancer drugs. Finally, targeting RDD1 leads to chemotherapy resistance in mice and low RDD1 expression is associated with poor prognosis in multiple cancers. Conclusions Together, we provide a functional landscape of resistance mechanisms to a broad range of chemotherapeutic drugs and highlight RDD1 as a new factor controlling multi-drug resistance. This information can guide personalized therapies or instruct rational drug combinations to minimize acquisition of resistance.

Details

Language :
English
Volume :
21
Issue :
1
Database :
OpenAIRE
Journal :
Genome Biology
Accession number :
edsair.doi.dedup.....922824cb7feafff70032b0460cca2622