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Real time single cell analysis of Bid cleavage and Bid translocation during caspase-dependent and neuronal caspase-independent apoptosis.

机译:在caspase依赖性和神经元caspase依赖性凋亡过程中对Bid裂解和Bid易位进行实时单细胞分析。

摘要

Bcl-2 homology domain (BH) 3-only proteins couple stress signals to evolutionarily conserved mitochondrial apoptotic pathways. Caspase 8-mediated cleavage of the BH3-only protein Bid into a truncated protein (tBid) and subsequent translocation of tBid to mitochondria has been implicated in death receptor signaling. We utilized a recombinant fluorescence resonance energy transfer (FRET) Bid probe to determine the kinetics of Bid cleavage and tBid translocation during death receptor-induced apoptosis in caspase 3-deficient MCF-7 cells. Cells treated with tumor necrosis factor-alpha (200 ng/ml) showed a rapid cleavage of the Bid-FRET probe occurring 75.4 +/- 12.6 min after onset of the tumor necrosis factor-alpha exposure. Cleavage of the Bid-FRET probe coincided with a translocation of tBid to the mitochondria and a collapse of the mitochondrial membrane potential (DeltaPsim). We next investigated the role of Bid cleavage in a model of caspase-independent, glutamate-induced excitotoxic apoptosis. Rat cerebellar granule neurons were transfected with the Bid-FRET probe and exposed to glutamate for 5 min. In contrast to death receptor-induced apoptosis, neurons showed a translocation of full-length Bid to the mitochondria. This translocation occurred 5.6 +/- 1.7 h after the termination of the glutamate exposure and was also paralleled with a collapse of the DeltaPsim. Proteolytic cleavage of the FRET probe also occurred, however, only 25.2 +/- 3.5 min after its translocation to the mitochondria. Subfractionation experiments confirmed a translocation of full-length Bid from the cytosolic to the mitochondrial fraction during excitotoxic apoptosis. Our data demonstrate that both tBid and full-length Bid have the capacity to translocate to mitochondria during apoptosis.
机译:Bcl-2同源域(BH)3仅蛋白质将应力信号耦合到进化上保守的线粒体凋亡途径。 Caspase 8介导的仅BH3蛋白Bid裂解为截短蛋白(tBid),随后tBid易位至线粒体,涉及死亡受体信号传导。我们利用重组荧光共振能量转移(FRET)Bid探针来确定Caspase 3缺陷MCF-7细胞中死亡受体诱导的细胞凋亡期间Bid切割和tBid易位的动力学。用肿瘤坏死因子-α(200 ng / ml)处理的细胞显示Bid-FRET探针快速裂解,发生于肿瘤坏死因子-α暴露后75.4 +/- 12.6分钟。 Bid-FRET探针的切割与tBid易位至线粒体以及线粒体膜电位(DeltaPsim)崩溃相吻合。接下来,我们研究了Bid切割在caspase独立,谷氨酸诱导的兴奋性细胞凋亡模型中的作用。用Bid-FRET探针转染大鼠小脑颗粒神经元,并使其暴露于谷氨酸5分钟。与死亡受体诱导的细胞凋亡相反,神经元显示全长Bid向线粒体易位。在谷氨酸暴露终止后5.6 +/- 1.7小时发生这种移位,并且还与DeltaPsim的崩溃平行。 FRET探针也发生了蛋白水解切割,但是仅在其转移至线粒体后25.2 +/- 3.5分钟。细分实验证实了在兴奋性细胞凋亡期间全长Bid从胞质转移到线粒体部分。我们的数据表明,tBid和全长Bid在凋亡过程中均具有转位至线粒体的能力。

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