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Senotoxins target senescence via lipid binding specificity, ion imbalance and lipidome remodeling

Nature Aging. 2025-08; 
Javier Moral-Sanz; Isabel Fern ndez-Carrasco; Valentina Ramponi; Amanda Garrido; Izhar Karbat; Pablo Cabezas-Sainz; Esperanza Rivera-de-Torre; Osama Elsallabi; Roberto Mart n-Hern ndez; Jos L. L pez-Aceituno; Nathan L. Price; Laura Sanchez; Gonzalo Colmenarejo; lvaro Mart nez-del-Pozo; Irina Vetter; Angel Cogolludo; Francisco Perez-Vizcaino; Jorge Del-Pozo; Eitan Reuveny; Manuel A. Fern ndez-Rojo; Paul D. Robbins; Rafael de Cabo; Manuel Serrano; Maria P. Ikonomopoulou
Products/Services Used Details Operation
PCR Cloning and Subcloning referred as StnIG throughout the paper. StnIG was recombinantly produce with pET30a-StnIG (cloned in Ndel-HindIII) and purified in Ni 2+ NTA columns by GenScript. Endotoxin removal was applied to archived maximum values between 0.1 and 1 Eu mg 1 . Purity was tested by SDS-PAGE under reducing condition. The product condition. The product was stored at 80 C in 50 mM Tris-HCl, 150 mM NaCl and 10% glycerol, pH 8.0. All other truncated forms were chemically synthesized by GenScript. Cell culture All human cancer cell lines and the non-transformed fibroblast lines were maintained in a humidified incubator at 37 C and 5% CO 2 and Get A Quote

Abstract

Senescence is a driver of aging and a barrier to tumor progression, but its persistent accumulation drives inflammation and relapse. Thus, the success of chemotherapy could be jeopardized when senescence emerges in the tumor microenvironment. Here we identified the senolytic properties of a pore-forming toxin, sticholysin I (StnI). StnI and our engineered improved form, StnIG, selectively hampers viability of chemotherapy-induced senescent cancer cells, as well as senescent primary cells. We show that its selectivity is mediated by specific binding and lipid ratios associated with senescence, including compromised membrane bilayer asymmetry. Mechanistically, StnIG triggers sodium and calcium influx and an endur... More

Keywords

Biochemistry, Cancer