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Curbing autophagy and histone deacetylases to kill cancer cells

机译:抑制自噬和组蛋白脱乙酰基酶杀死癌细胞

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摘要

Cells respond to cytotoxicity by activating a variety of signal transduction pathways. One pathway frequently upregulated during cytotoxic response is macroautophagy (hereafter referred to as autophagy). Previously, we demonstrated that pan-histone deacetylase (HDAC) inhibitors, such as the anticancer agent suberoylanilide hydroxamic acid (SAHA, Vorinostat), can induce autophagy. In this study, we show that HDAC inhibition triggers autophagy by suppressing MTOR and activating the autophagic kinase ULK1. Furthermore, autophagy inhibition can sensitize cells to both apoptotic and nonapoptotic cell death induced by SAHA, suggesting the therapeutic potential of autophagy targeting in combination with SAHA therapy. This study also raised a series of questions: What is the role of HDACs in regulating autophagy? Do individual HDACs have distinct functions in autophagy? How do HDACs regulate the nutrient-sensing kinase MTOR? Since SAHA-induced nonapoptotic cell death is not driven by autophagy, what then is the mechanism underlying the apoptosis-independent death? Tackling these questions should lead to a better understanding of autophagy and HDAC biology and contribute to the development of novel therapeutic strategies.
机译:细胞通过激活多种信号转导途径对细胞毒性作出反应。在细胞毒性反应中经常被上调的一种途径是巨自噬(以下称为自噬)。以前,我们证明了泛组蛋白脱乙酰基酶(HDAC)抑制剂,例如抗癌剂Suberoylanilide异羟肟酸(SAHA,Vorinostat),可以诱导自噬。在这项研究中,我们表明HDAC抑制通过抑制MTOR和激活自噬激酶ULK1来触发自噬。此外,自噬抑制作用可使细胞对SAHA诱导的凋亡和非凋亡细胞致死,这提示自噬靶向结合SAHA治疗的治疗潜力。这项研究还提出了一系列问题:HDAC在调节自噬中的作用是什么?各个HDAC在自噬中是否具有独特的功能? HDAC如何调节营养敏感激酶MTOR?由于SAHA诱导的非凋亡细胞死亡不是由自噬驱动的,那么凋亡非依赖性死亡的潜在机制是什么?解决这些问题将有助于更好地理解自噬和HDAC生物学,并有助于开发新的治疗策略。

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