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NEDD8-激活酶抑制剂 MLN4924 可使 Cullin(CUL)-环 E3 连接酶失活,从而引发癌细胞中的保护性自噬。

Inactivation of the Cullin (CUL)-RING E3 ligase by the NEDD8-activating enzyme inhibitor MLN4924 triggers protective autophagy in cancer cells.

机构信息

Department of Immunology, Shanghai Medical College, Fudan University, Shanghai, China.

出版信息

Autophagy. 2012 Nov;8(11):1677-9. doi: 10.4161/auto.21484. Epub 2012 Aug 9.

Abstract

The multiunit Cullin (CUL)-RING E3 ligase (CRL) controls diverse biological processes by targeting a mass of substrates for ubiquitination and degradation, whereas its dysfunction causes carcinogenesis. Post-translational neddylation of CUL, a process triggered by the NEDD8-activating enzyme E1 subunit 1 (NAE1), is required for CRL activation. Recently, MLN4924 was discovered via a high-throughput screen as a specific NAE1 inhibitor and first-in-class anticancer drug. By blocking CUL neddylation, MLN4924 inactivates CRL and causes the accumulation of CRL substrates that trigger cell cycle arrest, senescence and/or apoptosis to suppress the growth of cancer cells in vitro and in vivo. Recently, we found that MLN4924 also triggers protective autophagy in response to CRL inactivation. MLN4924-induced autophagy is attributed partially to the inhibition of mechanistic target of rapamycin (also known as mammalian target of rapamycin, MTOR) activity by the accumulation of the MTOR inhibitory protein DEPTOR, as well as reactive oxygen species (ROS)-induced stress. Moreover, the blockage of autophagy response enhances apoptosis in MLN4924-treated cells. Together, our findings not only reveal autophagy as a novel cellular response to CRL inactivation by MLN4924, but also provide a piece of proof-of-concept evidence for the combination of MLN4924 with autophagy inhibitors to enhance therapeutic efficacy.

摘要

多亚基 Cullin(CUL)-环 E3 连接酶(CRL)通过靶向大量底物进行泛素化和降解来控制多种生物过程,而其功能障碍会导致癌症发生。CUL 的多聚泛素化是一个由 NEDD8-激活酶 E1 亚基 1(NAE1)触发的过程,是 CRL 激活所必需的。最近,通过高通量筛选发现 MLN4924 是一种特异性 NAE1 抑制剂和首个抗癌药物。通过阻断 CUL 的泛素化,MLN4924 使 CRL 失活,并导致 CRL 底物积累,从而引发细胞周期停滞、衰老和/或细胞凋亡,以抑制体外和体内癌细胞的生长。最近,我们发现 MLN4924 还会触发 CRL 失活后的保护性自噬。MLN4924 诱导的自噬部分归因于 MTOR 抑制蛋白 DEPTOR 的积累抑制了机械靶标雷帕霉素(也称为哺乳动物靶标雷帕霉素,MTOR)的活性,以及活性氧(ROS)诱导的应激。此外,自噬反应的阻断增强了 MLN4924 处理细胞中的细胞凋亡。总之,我们的发现不仅揭示了自噬是 MLN4924 使 CRL 失活的一种新的细胞反应,还为 MLN4924 与自噬抑制剂联合使用以增强治疗效果提供了证据。

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