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Chemical, Physical and Biological Triggers of Evolutionary Conserved Bcl-xL-Mediated Apoptosis.

Cancers (2020-07-08)
Aleksandr Ianevski, Evgeny Kulesskiy, Klara Krpina, Guofeng Lou, Yahyah Aman, Andrii Bugai, Koit Aasumets, Yevhen Akimov, Daria Bulanova, Kiira Gildemann, Albert F Arutyunyan, Olga Yu Susova, Alexei L Zhuze, Ping Ji, Wei Wang, Toril Holien, Marit Bugge, Eva Zusinaite, Valentyn Oksenych, Hilde Lysvand, Joachim M Gerhold, Magnar Bjørås, Pål Johansen, Anders Waage, Caroline A Heckman, Evandro F Fang, Denis E Kainov
ZUSAMMENFASSUNG

The evidence that pan-Bcl-2 or Bcl-xL-specific inhibitors prematurely kill virus-infected or RNA/DNA-transfected cells provides rationale for investigating these apoptotic inducers further. We hypothesized that not only invasive RNA or DNA (biological factors) but also DNA/RNA-damaging chemical or physical factors could trigger apoptosis that have been sensitized with pan-Bcl-2 or Bcl-xL-specific agents; Methods: We tested chemical and physical factors plus Bcl-xL-specific inhibitor A-1155463 in cells of various origins and the small roundworms (C. elegans); Results: We show that combination of a A-1155463 along with a DNA-damaging agent, 4-nitroquinoline-1-oxide (4NQO), prematurely kills cells of various origins as well as C. elegans. The synergistic effect is p53-dependent and associated with the release of Bad and Bax from Bcl-xL, which trigger mitochondrial outer membrane permeabilization. Furthermore, we found that combining Bcl-xL-specific inhibitors with various chemical compounds or physical insults also induced cell death; Conclusions: Thus, we were able to identify several biological, chemical and physical triggers of the evolutionarily conserved Bcl-xL-mediated apoptotic pathway, shedding light on strategies and targets for novel drug development.

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McCoy 5A-Medium, Modified, with L-glutamine and sodium bicarbonate, liquid, sterile-filtered, suitable for cell culture