An <i>In Vivo</i> CRISPR Screen Identifies Stepwise Genetic Dependencies of Metastatic Progression

Manuel C. Scheidmann(University Hospital of Basel), Francesc Castro-Giner(SIB Swiss Institute of Bioinformatics), Karin Strittmatter(University Hospital of Basel), Ilona Krol(University Hospital of Basel), Aino Paasinen-Sohns(University Hospital of Basel), Ramona Scherrer(University Hospital of Basel), Cinzia Donato(University Hospital of Basel), Sofia Gkountela(University Hospital of Basel), Barbara M. Szczerba(University Hospital of Basel), Zoi Diamantopoulou(University Hospital of Basel), Simone Muenst(University Hospital of Basel), Tatjana Vlajnic(University Hospital of Basel), Leo Kunz(ETH Zurich), Marcus Vetter(University Hospital of Basel), Christoph Rochlitz(University Hospital of Basel), Verdon Taylor(University Hospital of Basel), Claudio Giachino(University Hospital of Basel), Timm Schroeder(ETH Zurich), Randall J. Platt(ETH Zurich), Nicola Aceto(University Hospital of Basel)
Cancer Research
December 16, 2021
Cited by 33Open Access
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Abstract

Blood-borne metastasis of breast cancer involves a series of tightly regulated sequential steps, including the growth of a primary tumor lesion, intravasation of circulating tumor cells (CTC), and adaptation in various distant metastatic sites. The genes orchestrating each of these steps are poorly understood in physiologically relevant contexts, owing to the rarity of experimental models that faithfully recapitulate the biology, growth kinetics, and tropism of human breast cancer. Here, we conducted an in vivo loss-of-function CRISPR screen in newly derived CTC xenografts, unique in their ability to spontaneously mirror the human disease, and identified specific genetic dependencies for each step of the metastatic process. Validation experiments revealed sensitivities to inhibitors that are already available, such as PLK1 inhibitors, to prevent CTC intravasation. Together, these findings present a new tool to reclassify driver genes involved in the spread of human cancer, providing insights into the biology of metastasis and paving the way to test targeted treatment approaches. SIGNIFICANCE: A loss-of-function CRISPR screen in human CTC-derived xenografts identifies genes critical for individual steps of the metastatic cascade, suggesting novel drivers and treatment opportunities for metastatic breast cancers.


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