MRC Toxicology Unit, The University of Leicester, Leicester, England, UK.
Autophagy. 2010 Nov;6(8):1042-56. doi: 10.4161/auto.6.8.13337.
It is becoming increasingly clear that there is crosstalk between the apoptotic and autophagic pathways, with autophagy helping to contribute to cell death by providing energy to allow the energy-requiring programmed cell death process to complete, as well as degrading cellular material in its own right. Recent evidence has suggested that Atg proteins can themselves be targets of caspases, providing potential regulation of autophagy as well as uncovering novel functions for fragments derived from Atg proteins. However, to date there has not been a detailed examination of which Atg proteins may be the targets of which death proteases. We show that the majority of human Atg (hAtg) proteins can be cleaved by calpain 1, which is activated in some apoptotic paradigms, as well as other forms of death. We also show that hAtg3 is cleaved by caspases-3, -6 and -8, hAtg6 (Beclin 1) is cleaved by caspase-3 and -6, while hAtg9, hAtg7 and the hAtg4 homologues can be cleaved by caspase-3. Cleavage of Beclin 1 was also seen in apoptosis of HeLa cells induced by staurosporine and TRAIL, along with cleavage of Atg3 and Atg4C. There were subtle effects of caspase inhibition on GFP-LC3 lipidation but more marked effects on the formation of GFP-LC3 puncta (a marker of autophagosome formation) and p62 degradation, indicating that caspase cleavage of autophagy-related proteins can affect the autophagic process. Notably we show that p62 is a target for caspase-6 and -8 cleavage.
越来越明显的是,凋亡和自噬途径之间存在串扰,自噬通过提供能量来帮助完成需要能量的程序性细胞死亡过程,从而有助于细胞死亡,并且本身就降解细胞物质。最近的证据表明,Atg 蛋白本身可以成为 Caspase 的靶标,为自噬提供潜在的调节,并揭示来自 Atg 蛋白的片段的新功能。然而,迄今为止,尚未详细研究哪些 Atg 蛋白可能是哪些死亡蛋白酶的靶标。我们表明,大多数人类 Atg(hAtg)蛋白可被钙蛋白酶 1 切割,钙蛋白酶 1 在某些凋亡范例以及其他形式的死亡中被激活。我们还表明,hAtg3 可被 Caspase-3、-6 和 -8 切割,hAtg6(Beclin 1)可被 Caspase-3 和 -6 切割,而 hAtg9、hAtg7 和 hAtg4 同源物可被 Caspase-3 切割。在 staurosporine 和 TRAIL 诱导的 HeLa 细胞凋亡中也观察到 Beclin 1 的切割,以及 Atg3 和 Atg4C 的切割。Caspase 抑制剂对 GFP-LC3 脂质化的影响很小,但对 GFP-LC3 斑点(自噬体形成的标志物)的形成和 p62 降解的影响更为明显,这表明 Caspase 切割与自噬相关的蛋白可以影响自噬过程。值得注意的是,我们表明 p62 是 Caspase-6 和 -8 切割的靶标。