首页> 美国卫生研究院文献>The Journal of Experimental Medicine >The Central Executioner of Apoptosis: Multiple Connections between Protease Activation and Mitochondria in Fas/APO-1/CD95- and Ceramide-induced Apoptosis
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The Central Executioner of Apoptosis: Multiple Connections between Protease Activation and Mitochondria in Fas/APO-1/CD95- and Ceramide-induced Apoptosis

机译:凋亡的中央执行者:蛋白酶激活与Fas / APO-1 / CD95-和神经酰胺诱导的细胞凋亡中的线粒体之间的多种联系

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摘要

According to current understanding, cytoplasmic events including activation of protease cascades and mitochondrial permeability transition (PT) participate in the control of nuclear apoptosis. However, the relationship between protease activation and PT has remained elusive. When apoptosis is induced by cross-linking of the Fas/APO-1/CD95 receptor, activation of interleukin-1β converting enzyme (ICE; caspase 1) or ICE-like enzymes precedes the disruption of the mitochondrial inner transmembrane potential (ΔΨm). In contrast, cytosolic CPP32/ Yama/Apopain/caspase 3 activation, plasma membrane phosphatidyl serine exposure, and nuclear apoptosis only occur in cells in which the ΔΨm is fully disrupted. Transfection with the cowpox protease inhibitor crmA or culture in the presence of the synthetic ICE-specific inhibitor Ac-YVAD.cmk both prevent the ΔΨm collapse and subsequent apoptosis. Cytosols from anti-Fas–treated human lymphoma cells accumulate an activity that induces PT in isolated mitochondria in vitro and that is neutralized by crmA or Ac-YVAD.cmk. Recombinant purified ICE suffices to cause isolated mitochondria to undergo PT-like large amplitude swelling and to disrupt their ΔΨm. In addition, ICE-treated mitochondria release an apoptosis-inducing factor (AIF) that induces apoptotic changes (chromatin condensation and oligonucleosomal DNA fragmentation) in isolated nuclei in vitro. AIF is a protease (or protease activator) that can be inhibited by the broad spectrum apoptosis inhibitor Z-VAD.fmk and that causes the proteolytical activation of CPP32. Although Bcl-2 is a highly efficient inhibitor of mitochondrial alterations (large amplitude swelling + ΔΨm collapse + release of AIF) induced by prooxidants or cytosols from ceramide-treated cells, it has no effect on the ICE-induced mitochondrial PT and AIF release. These data connect a protease activation pathway with the mitochondrial phase of apoptosis regulation. In addition, they provide a plausible explanation of why Bcl-2 fails to interfere with Fas-triggered apoptosis in most cell types, yet prevents ceramide- and prooxidant-induced apoptosis.
机译:根据目前的理解,胞质事件包括蛋白酶级联反应的激活和线粒体通透性转变(PT)参与核细胞凋亡的控制。但是,蛋白酶活化与PT之间的关系仍然难以捉摸。当通过Fas / APO-1 / CD95受体的交联诱导细胞凋亡时,白细胞介素1β转化酶(ICE;胱天蛋白酶1)或类ICE酶的激活先于线粒体内部跨膜电位(ΔΨm)的破坏。相反,胞质CPP32 / Yama / Apopain / caspase 3活化,质膜磷脂酰丝氨酸暴露和核凋亡仅发生在ΔΨm被完全破坏的细胞中。用牛痘蛋白酶抑制剂crmA转染或在合成ICE特异性抑制剂Ac-YVAD.cmk存在下进行培养均可防止Δm崩溃和随后的细胞凋亡。来自经过抗Fas处理的人类淋巴瘤细胞的胞质溶胶在体外积累了一种活性,该活性诱导分离的线粒体中的PT,并被crmA或Ac-YVAD.cmk中和。重组纯化的ICE足以使分离的线粒体经历PT样的大幅度溶胀并破坏其Δandm。此外,ICE处理的线粒体释放出凋亡诱导因子(AIF),该因子在体外诱导细胞核的凋亡变化(染色质浓缩和寡核小体DNA片段化)。 AIF是一种蛋白酶(或蛋白酶激活剂),可以被广谱凋亡抑制剂Z-VAD.fmk抑制,并引起CPP32的蛋白水解激活。尽管Bcl-2是由神经酰胺处理过的细胞的前氧化剂或胞质溶胶诱导的线粒体改变(大幅度溶胀+Δmm塌陷+ AIF释放)的高效抑制剂,但它对ICE诱导的线粒体PT和AIF释放没有影响。这些数据将蛋白酶激活途径与细胞凋亡调节的线粒体相联系起来。此外,它们为为什么Bcl-2无法在大多数细胞类型中干扰Fas触发的细胞凋亡,却阻止神经酰胺和前氧化剂诱导的细胞凋亡提供了合理的解释。

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