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BNIP3 is degraded by ULK1-dependent autophagy via MTORC1 and AMPK

机译:BNIP3通过MTORC1和AMPK被依赖于ULK1的自噬降解

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摘要

BNIP3 (BCL2/adenovirus E1B 19 kDa interacting protein 3) is an atypical BH3-only protein that is induced by hypoxia-inducible factor 1 (HIF1) under hypoxia. BNIP3 is primarily regulated at the transcriptional level. However, little is known about the underlying mechanism of BNIP3 degradation. In this study, we found that BNIP3 was downregulated when hypoxia was accompanied by amino acid starvation. The BNIP3 downregulation did not occur at the transcription level and was independent of HIF1A. BNIP3 was primarily degraded by the proteasome, but BNIP3 was subjected to both proteasomal and autophagic degradation in response to starvation. The autophagic degradation of BNIP3 was dependent on ATG7 and MAP1LC3. We determined that autophagic degradation of BNIP3 was specifically regulated by ULK1 via the MTOR-AMPK pathway. Moreover, we confirmed that BNIP3 could play a protective role in tumor cells under hypoxia, and the treatment with Torin1, an MTOR inhibitor, decreased the BNIP3 level and enhanced the death of hypoxic tumor cells.
机译:BNIP3(BCL2 /腺病毒E1B 19 kDa相互作用蛋白3)是一种非典型的仅BH3蛋白,在低氧条件下由低氧诱导因子1(HIF1)诱导。 BNIP3主​​要在转录水平受到调控。但是,对BNIP3降解的潜在机制知之甚少。在这项研究中,我们发现缺氧并伴有氨基酸饥饿时BNIP3被下调。 BNIP3下调在转录水平上没有发生,并且独立于HIF1A。 BNIP3主​​要被蛋白酶体降解,但BNIP3响应饥饿而同时经历了蛋白酶体降解和自噬降解。 BNIP3的自噬降解取决于ATG7和MAP1LC3。我们确定BNIP3的自噬降解是通过MTOR-AMPK途径由ULK1特异性调控的。此外,我们证实BNIP3可以在缺氧条件下对肿瘤细胞起到保护作用,而MTOR抑制剂Torin1的治疗可以降低BNIP3的水平并增加缺氧肿瘤细胞的死亡。

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