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Apoptosis induced by overall metabolic stress converges on the Bcl-2 family proteins Noxa and Mcl-1

机译:整体代谢应激诱导的细胞凋亡在Bcl-2家族蛋白Noxa和Mcl-1上收敛。

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Apoptosis provoked by glucose shortage in dividing T cells is mediated via the BH3-only protein Noxa and inhibition of its binding partner Mcl-1. It is unknown how signals from cellular metabolism can affect the balance between Mcl-1 and Noxa and to what extent other Bcl-2 members are involved in this apoptosis cascade. Here, we defined the mechanism underlying apoptosis in relation to various types of metabolic stress. First, we established that the Noxa/Mcl-1 balance is regulated by glucose deprivation as well as by general metabolic stress, via changes in proteasome-mediated degradation of Mcl-1. Second, in contrast with cytokine-deprivation, no transcriptional modulation of Mcl-1, Puma, Bim or Noxa was observed during glucose deprivation. Third, no changes in PKB or GSK3 activity occurred and no clear role for AMPK was detected. Fourth, apoptosis triggered by nutrient deprivation was executed without signs of overt autophagy and independent of ROS production or p38 MAP kinase activity. Lastly, apoptosis under nutrient limitation could also be delayed by knock-down of Bim or overexpression of Bcl-2. In conclusion, Noxa functions in a specific apoptotic pathway that integrates overall nutrient stress, independent from attenuated PI3K/PKB signaling and without clear involvement of autophagy.
机译:T细胞分裂中葡萄糖缺乏引起的凋亡是通过仅BH3蛋白Noxa及其结合伴侣Mcl-1的抑制介导的。尚不清楚来自细胞代谢的信号如何影响Mcl-1和Noxa之间的平衡,以及其他Bcl-2成员在何种程度上参与该凋亡级联反应。在这里,我们定义了与各种类型的代谢应激有关的细胞凋亡的潜在机制。首先,我们通过蛋白酶体介导的Mcl-1降解的变化,确定了Noxa / Mcl-1的平衡受葡萄糖剥夺以及一般代谢应激的调节。其次,与细胞因子剥夺相反,在葡萄糖剥夺过程中未观察到Mcl-1,Puma,Bim或Noxa的转录调节。第三,没有发生PKB或GSK3活性的变化,也没有检测到AMPK的明确作用。第四,执行了由营养剥夺触发的凋亡,没有明显的自噬迹象,并且与ROS产生或p38 MAP激酶活性无关。最后,通过限制Bim的敲除或Bcl-2的过表达也可以延迟营养限制下的细胞凋亡。总之,Noxa在特定的凋亡途径中起作用,该途径整合了整体营养胁迫,而与减弱的PI3K / PKB信号传导无关,并且没有自噬的明显参与。

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