Genome wide CRISPR/Cas9 screen identifies the coagulation factor IX (F9) as a regulator of senescence

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作者
Paula Carpintero-Fernández
Michela Borghesan
Olga Eleftheriadou
Belen Pan-Castillo
Juan Antonio Fafián-Labora
Tom P. Mitchell
Alejandro Yuste
Muge Ogrunc
Thomas D. Nightingale
Maria Mayan
Ana O’Loghlen
机构
[1] Epigenetics & Cellular Senescence Group; Blizard Institute; Barts and The London School of Medicine and Dentistry; Queen Mary University of London; 4 Newark Street,CellCOM Research Group. Instituto de Investigación Biomédica de A Coruña (INIBIC). CH
[2] StarkAge Therapeutics,Universitario A Coruña (XXIAC)
[3] Campus de l’Institut Pasteur de Lille,Grupo de investigación en Terapia Celular y Medicina Regenerativa, Departamento de Fisioterapia, Medicina y Ciencias Biomédicas, Facultad de Ciencias de la Salud
[4] 1 rue du Professeur Calmette,undefined
[5] Centre for Microvascular Research. The William Harvey Research Institute. Charterhouse Square Barts and the London School of Medicine and Dentistry Queen Mary University of London,undefined
[6] EC1M 6BQ,undefined
[7] CellCOM Research Group. Instituto de Investigación Biomédica de A Coruña (INIBIC). CH-Universitario A Coruña (XXIAC). Universidade da Coruña. Servizo Galego de Saúde (SERGAS). Xubias de Arriba,undefined
[8] SynLab Hauts-de-France,undefined
[9] Campus de l’Institut Pasteur de Lille,undefined
[10] 1 rue du Professeur Calmette,undefined
[11] Universidade da Coruña. Servizo Galego de Saúde (SERGAS) Xubias de Arriba,undefined
[12] Universidade da Coruña,undefined
[13] INIBIC-Complejo Hospitalario Universitario A Coruña (CHUAC),undefined
[14] Agrupación estratégica CICA-INIBIC,undefined
[15] As Xubías,undefined
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During this last decade, the development of prosenescence therapies has become an attractive strategy as cellular senescence acts as a barrier against tumour progression. In this context, CDK4/6 inhibitors induce senescence and reduce tumour growth in breast cancer patients. However, even though cancer cells are arrested after CDK4/6 inhibitor treatment, genes regulating senescence in this context are still unknown limiting their antitumour activity. Here, using a functional genome-wide CRISPR/Cas9 genetic screen we found several genes that participate in the proliferation arrest induced by CDK4/6 inhibitors. We find that downregulation of the coagulation factor IX (F9) using sgRNA and shRNA prevents the cell cycle arrest and senescent-like phenotype induced in MCF7 breast tumour cells upon Palbociclib treatment. These results were confirmed using another breast cancer cell line, T47D, and with an alternative CDK4/6 inhibitor, Abemaciclib, and further tested in a panel of 22 cancer cells. While F9 knockout prevents the induction of senescence, treatment with a recombinant F9 protein was sufficient to induce a cell cycle arrest and senescence-like state in MCF7 tumour cells. Besides, endogenous F9 is upregulated in different human primary cells cultures undergoing senescence. Importantly, bioinformatics analysis of cancer datasets suggest a role for F9 in human tumours. Altogether, these data collectively propose key genes involved in CDK4/6 inhibitor response that will be useful to design new therapeutic strategies in personalised medicine in order to increase their efficiency, stratify patients and avoid drug resistance.
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