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Autophagy-dependent cancer cells circumvent loss of the upstream regulator RB1CC1/FIP200 and loss of LC3 conjugation by similar mechanisms

机译:自噬依赖性癌细胞周伏损失的上游稳压器RB1CC1 / FIP200和通过类似机制的LC3缀合的损失

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Macroautophagy/autophagy degrades proteins and organelles to generate macromolecular building blocks. As such, some cancer cells are particularly dependent on autophagy. In a previous paper, we found that even highly autophagy-dependent cancer cells can adapt to circumvent autophagy inhibition. However, it remains unclear if autophagy-dependent cancer cells could survive the complete elimination of autophagosome formation. We extended our previous findings to show that knockout (KO) of both the upstream autophagy regulator RB1CC1/FIP200 and the downstream regulator and mediator of LC3 conjugation, ATG7, strongly inhibits growth in highly autophagy-dependent cells within one week of editing. However, rare clones survived the loss of ATG7 or RB1CC1 and maintained growth even under autophagy-inducing conditions. Autophagy-dependent cells circumvent the complete loss of autophagy that is mediated by RB1CC1 KO, similar to the loss of ATG7, by upregulating NFE2L2/NRF2 signaling. These results indicate that cancer cell lines could adapt to the complete loss of autophagy by changing their biology to adopt alternative ways of dealing with autophagy-mediated cellular functions.
机译:宏观摄影/自噬降解蛋白质和细胞器以产生大分子构建块。因此,一些癌细胞特别依赖于自噬。在前一篇论文中,我们发现即使是高度自噬依赖性癌细胞也可以适应旨在避免的自噬抑制。然而,如果依赖性依赖性癌细胞可以在完全消除自噬体形成的情况下,仍然不清楚。我们扩展了我们以前的发现,以表明,上游自噬稳压器RB1CC1 / FIP200和LC3缀合的下游调节剂和下游调节剂和介体,ATG7,在编辑的一周内强烈抑制高度自脂依赖性细胞的生长。然而,罕见的克隆甚至在自噬诱导条件下损失了ATG7或RB1CC1的丧失并保持生长。依赖性依赖性细胞规避由RB1CC1 KO介导的自噬丧失,通过上调NFE2L2 / NRF2信号传导类似于ATG7的损耗。这些结果表明,通过改变其生物学来采用处理自噬介导的细胞功能的替代方法,癌细胞系可以适应完全丧失自噬。

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