首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Autophagy Induced by Deficiency of Sphingosine-1-phosphate Phosphohydrolase 1 Is Switched to Apoptosis by Calpain-mediated Autophagy-related Gene 5 (Atg5) Cleavage
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Autophagy Induced by Deficiency of Sphingosine-1-phosphate Phosphohydrolase 1 Is Switched to Apoptosis by Calpain-mediated Autophagy-related Gene 5 (Atg5) Cleavage

机译:由鞘氨醇-1-磷酸磷酸水解酶1缺乏诱导的自噬被钙蛋白酶介导的自噬相关基因5(Atg5)切割转换为凋亡。

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摘要

Sphingosine 1-phosphate (S1P) and ceramide have been implicated in both autophagy and apoptosis. However, the roles of these sphingolipid metabolites in the links between these two processes are not completely understood. Depletion of S1P phosphohydrolase-1 (SPP1), which degrades intracellular S1P, induces the unfolded protein response and endoplasmic reticulum stress-induced autophagy (Lépine, S., Allegood, J. C., Park, M., Dent, P., Milstien, S., and Spiegel, S. (2011) Cell Death Differ. 18, 350–361). Surprisingly, however, treatment with doxorubicin, which by itself also induced autophagy, markedly reduced the extent of autophagy mediated by depletion of SPP1. Concomitantly, doxorubicin-induced apoptosis was greatly enhanced by down-regulation of SPP1. Autophagy and apoptosis seemed to be sequentially linked because inhibiting autophagy with 3-methyladenine also markedly attenuated apoptosis. Moreover, silencing Atg5 or the three sensors of the unfolded protein response, IRE1α, ATF6, and PKR-like eIF2α kinase (PERK), significantly decreased both autophagy and apoptosis. Doxorubicin stimulated calpain activity and Atg5 cleavage, which were significantly enhanced in SPP1-depleted cells. Inhibition or depletion of calpain not only suppressed Atg5 cleavage, it also markedly decreased the robust apoptosis induced by doxorubicin in SPP1-deficient cells. Importantly, doxorubicin also increased de novo synthesis of the pro-apoptotic sphingolipid metabolite ceramide. Elevation of ceramide in turn stimulated calpain; conversely, inhibiting ceramide formation suppressed Atg5 cleavage and apoptosis. Hence, doxorubicin switches protective autophagy in SPP1-depleted cells to apoptosis by calpain-mediated Atg5 cleavage.
机译:1-磷酸鞘氨醇(S1P)和神经酰胺与自噬和细胞凋亡有关。但是,这些鞘脂代谢物在这两个过程之间的联系中的作用尚不完全清楚。降解细胞内S1P的S1P磷酸水解酶1(SPP1)耗竭诱导未折叠的蛋白反应和内质网应激诱导的自噬(Lépine,S.,Allegood,JC,Park,M.,Dent,P.,Milstien,S等,Spiegel,S.(2011)细胞死亡差异。18,350–361)。然而,令人惊讶的是,用阿霉素本身还诱导自噬的治疗显着降低了由SPP1消耗介导的自噬程度。同时,阿霉素诱导的凋亡通过SPP1的下调而大大增强。自噬和细胞凋亡似乎是顺序相连的,因为用3-甲基腺嘌呤抑制自噬也能显着减弱细胞凋亡。此外,沉默Atg5或未折叠蛋白应答的三个传感器IRE1α,ATF6和PKR样eIF2α激酶(PERK),可显着降低自噬和凋亡。阿霉素刺激钙蛋白酶活性和Atg5裂解,这在SPP1缺失的细胞中显着增强。钙蛋白酶的抑制或消耗不仅抑制了Atg5的裂解,而且还显着降低了阿霉素诱导的SPP1缺陷细胞中的强凋亡。重要的是,阿霉素还增加了促凋亡鞘脂代谢物神经酰胺的从头合成。神经酰胺升高反过来刺激钙蛋白酶;相反,抑制神经酰胺的形成可抑制Atg5的裂解和凋亡。因此,阿霉素通过钙蛋白酶介导的Atg5裂解将SPP1缺失细胞中的保护性自噬切换为凋亡。

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