CRL2-KLHDC3 E3 ubiquitin ligase complex suppresses ferroptosis through promoting p14ARF degradation

The cystine/glutamate antiporter SLC7A11 (commonly known as xCT) functions to import cystine for glutathione biosynthesis, thereby protecting cells from oxidative stress and ferroptosis, a regulated form of non-apoptotic cell death driven by the accumulation of lipid-based reactive oxygen species (R...

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Veröffentlicht in:Cell death and differentiation 2022-04, Vol.29 (4), p.758-771
Hauptverfasser: Zhang, Pingzhao, Gao, Kun, Zhang, Liang, Sun, Huiru, Zhao, Xiaying, Liu, Yajuan, Lv, Zeheng, Shi, Qing, Chen, Yingji, Jiao, Dongyue, Li, Yao, Gu, Wei, Wang, Chenji
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Sprache:eng
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Zusammenfassung:The cystine/glutamate antiporter SLC7A11 (commonly known as xCT) functions to import cystine for glutathione biosynthesis, thereby protecting cells from oxidative stress and ferroptosis, a regulated form of non-apoptotic cell death driven by the accumulation of lipid-based reactive oxygen species (ROS). p14 ARF , a well-established tumor suppressor, promotes ferroptosis by inhibiting NRF2-mediated SLC7A11 transcription. Here, we demonstrate the crucial role of Cullin 2 RING E3 ligase (CRL2)-KLHDC3 E3 ubiquitin ligase complex in regulating p14 ARF protein stability. KLHDC3 acts as a CRL2 adaptor that specifically recognizes a C-terminal degron in p14 ARF and triggers p14 ARF for ubiquitin–proteasomal degradation. This regulation mode is absent in the murine p14 ARF homolog, p19 arf which lacks the C-terminal degron. We also show that KLHDC3 suppresses ferroptosis in vitro and supports tumor growth in vivo by relieving p14 ARF -mediated suppression of SLC7A11 transcription. Overall, these findings reveal that the protein stability and pro-ferroptotic function of p14 ARF are controlled by a CRL2 E3 ubiquitin ligase complex, and suggest that suppression of the p14 ARF- NRF2-SLC7A11 regulatory pathway by KLHDC3 overexpression likely contributes to cancer progression.
ISSN:1350-9047
1476-5403
DOI:10.1038/s41418-021-00890-0