首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Intracellular signaling dynamics during apoptosis execution in the presence or absence of X-linked-inhibitor-of-apoptosis-protein.
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Intracellular signaling dynamics during apoptosis execution in the presence or absence of X-linked-inhibitor-of-apoptosis-protein.

机译:X连锁的凋亡抑制蛋白存在或不存在的凋亡执行过程中的细胞内信号动力学。

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摘要

X-linked-inhibitor-of-apoptosis-protein (XIAP) is the most potent intracellular inhibitor of caspases-9, -3 and -7. While highly elevated XIAP levels reduce the apoptotic response to various stimuli, the potency of physiological XIAP expression to control caspase activation and the consequences of XIAP deficiency on apoptosis execution remain controversial. We therefore analyzed parental and XIAP-deficient DLD-1 and HCT-116 colon cancer cells by employing fluorescence-based single-cell imaging of mitochondrial permeabilisation and effector caspase activation. Our results demonstrate that physiological XIAP expression maintains a transient "off"-state for effector caspase activation following mitochondrial permeabilisation. Loss of XIAP expression instead accelerated the caspase activation response, but did not enhance the measured caspase activity. Apoptosis execution kinetics were independent of activating the intrinsic or extrinsic pathway by either staurosporine or TRAIL, and corresponded to computational systems analyses of caspase activation dynamics. We confirmed a protective role of XIAP upstream of mitochondrial permeabilisation during TRAIL-induced apoptosis, however, once mitochondria permeabilised ultimately no cell could escape effector caspase activation, regardless of potential cell-to-cell variability within the populations or the presence of XIAP. Our study provides comprehensive kinetic and mechanistic insight into the rapid molecular dynamics during apoptosis execution in the presence or absence of physiological XIAP expression.
机译:X连锁凋亡抑制蛋白(XIAP)是caspases-9,-3和-7最有效的细胞内抑制剂。虽然高度升高的XIAP水平降低了对各种刺激的凋亡反应,但生理性XIAP表达控制半胱天冬酶激活的能力以及XIAP缺乏对细胞凋亡执行的影响仍然存在争议。因此,我们通过采用基于荧光的线粒体通透性和效应子胱天蛋白酶激活的单细胞成像技术,分析了亲本和XIAP缺陷型DLD-1和HCT-116结肠癌细胞。我们的结果表明,线粒体通透性增高后,生理学XIAP表达可维持短暂的“关闭”状态,以激活caspase。 XIAP表达的丧失反而加速了caspase活化反应,但并未增强所测caspase活性。凋亡执行动力学与通过星形孢菌素或TRAIL激活内在或外在途径无关,并且对应于半胱天冬酶激活动力学的计算系统分析。我们证实了TRAAP诱导的凋亡过程中,线粒体通透性上游的XIAP具有保护作用,但是,一旦线粒体通透性最终,无论细胞群之间潜在的细胞间变异性或XIAP的存在,最终都不会有细胞逃脱caspase的激活。我们的研究为存在或不存在生理学XIAP表达的凋亡执行过程中的快速分子动力学提供了全面的动力学和力学见解。

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