| Literature DB >> 29099485 |
Andrea Mohr1, Laura Deedigan2, Sylwia Jencz1, Yasamin Mehrabadi1, Lily Houlden1,3, Stella-Maris Albarenque2, Ralf M Zwacka1.
Abstract
The mechanisms of how chemotherapeutic drugs lead to cell cycle checkpoint regulation and DNA damage repair are well understood, but how such signals are transmitted to the cellular apoptosis machinery is less clear. We identified a novel apoptosis-inducing complex, we termed FADDosome, which is driven by ATR-dependent caspase-10 upregulation. During FADDosome-induced apoptosis, cFLIPL is ubiquitinated by TRAF2, leading to its degradation and subsequent FADD-dependent caspase-8 activation. Cancer cells lacking caspase-10, TRAF2 or ATR switch from this cell-autonomous suicide to a more effective, autocrine/paracrine mode of apoptosis initiated by a different complex, the FLIPosome. It leads to processing of cFLIPL to cFLIPp43, TNF-α production and consequently, contrary to the FADDosome, p53-independent apoptosis. Thus, targeting the molecular levers that switch between these mechanisms can increase efficacy of treatment and overcome resistance in cancer cells.Entities:
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Year: 2017 PMID: 29099485 PMCID: PMC5762848 DOI: 10.1038/cdd.2017.164
Source DB: PubMed Journal: Cell Death Differ ISSN: 1350-9047 Impact factor: 15.828