Nuclear localization of Beclin 1 promotes radiation-induced DNA damage repair independent of autophagy

Beclin 1 is a well-established core mammalian autophagy protein that is embryonically indispensable and has been presumed to suppress oncogenesis via an autophagy-mediated mechanism. Here, we show that Beclin 1 is a prenatal primary cytoplasmic protein but rapidly relocated into the nucleus during p...

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Veröffentlicht in:Scientific reports 2017-03, Vol.7 (1), p.45385-45385, Article 45385
Hauptverfasser: Xu, Fei, Fang, Yixuan, Yan, Lili, Xu, Lan, Zhang, Suping, Cao, Yan, Xu, Li, Zhang, Xiaoying, Xie, Jialing, Jiang, Gaoyue, Ge, Chaorong, An, Ni, Zhou, Daohong, Yuan, Na, Wang, Jianrong
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Sprache:eng
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Zusammenfassung:Beclin 1 is a well-established core mammalian autophagy protein that is embryonically indispensable and has been presumed to suppress oncogenesis via an autophagy-mediated mechanism. Here, we show that Beclin 1 is a prenatal primary cytoplasmic protein but rapidly relocated into the nucleus during postnatal development in mice. Surprisingly, deletion of beclin 1 in in vitro human cells did not block an autophagy response, but attenuated the expression of several DNA double-strand break (DSB) repair proteins and formation of repair complexes, and reduced an ability to repair DNA in the cells exposed to ionizing radiation (IR). Overexpressing Beclin 1 improved the repair of IR-induced DSB, but did not restore an autophagy response in cells lacking autophagy gene Atg7 , suggesting that Beclin 1 may regulate DSB repair independent of autophagy in the cells exposed to IR. Indeed, we found that Beclin 1 could directly interact with DNA topoisomerase IIβ and was recruited to the DSB sites by the interaction. These findings reveal a novel function of Beclin 1 in regulation of DNA damage repair independent of its role in autophagy particularly when the cells are under radiation insult.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep45385