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

机译:BECLIN 1的核定位促进辐射诱导的DNA损伤修复,与自噬无关

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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 beclin1 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.
机译:BECLIN 1是一种良好的核心哺乳动物自噬蛋白,其是胚胎不可缺少的,并且已经预测通过自噬介导的机制来抑制血管生成。在这里,我们表明BECLIN 1是产前主要细胞质蛋白,但在小鼠的出生后发育期间迅速迁移到细胞核中。令人惊讶的是,在体外人体细胞中删除BECLIN1未阻断自噬反应,但减弱了几种DNA双链断裂(DSB)修复蛋白的表达和修复复合物的形成,并降低了暴露细胞中的DNA的能力电离辐射(IR)。过表达BECLIN 1改善了IR诱导的DSB的修复,但未恢复缺乏自噬基因ATG7的细胞中的自噬反应,表明BECLIN 1可以根据暴露于IR的细胞中的自噬调节DSB修复。实际上,我们发现BECLIN 1可以直接与DNA拓扑异构酶IIβ相互作用,并通过相互作用募集到DSB位点。这些发现揭示了BECLIN 1在调节DNA损伤修复中的新功能,与其在自噬中的作用无关,特别是当细胞在辐射损伤下时。

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