Oncogene inactivation-induced senescence facilitates tumor relapse
Abstract
Abstract Oncogene-directed therapies can induce profound tumor regression in oncogene-addicted cancers, but their long-term benefit is often limited by resistance and relapse. Here we show that oncogene inactivation rapidly induces senescence and a pro-inflammatory senescence-associated secretory phenotype (SASP). In vivo, oncogene inactivation-induced senescence (OIIS) predisposes tumors to relapse, accompanied by polyploidy, chromosomal instability, acquisition of alternative oncogenic pathways including mouse double minute 2 homolog (Mdm2) upregulation, and tumor microenvironmental remodeling toward neovascularization and immunosuppression. Spectral flow cytometry reveals a shift from an immune-activated to an immunosuppressive milieu during relapse. OIIS features are also observed in human BRAF V600E melanoma cells treated with vemurafenib, supporting clinical relevance. Together, our findings establish OIIS as a double-edged process: it initially restrains tumor growth but simultaneously creates conditions that favor recurrence. By defining the genetic, metabolic and microenvironmental hallmarks of OIIS, our study highlights adaptations to oncogene deprivation that limit the durability of targeted therapies.
Article Details
Authors (20)
Philipp Schmitt
Katrin Hönig
Maria Teresa Norcia
Marta F. Nogueira
Viktoria Flore
Inés Simó Vesperinas
Maria Villoro-Agud
LuShan Peng
Zuhal Safyürek
Mehreen Tariq
Ana Milojkovic
Kathleen Anders
Evelin Schröck
Sascha Sauer
Bora Uyar
Altuna Akalin
Gerald Willimsky
Simon Haas
Inmaculada Martínez-Reyes
Thomas Blankenstein