首页> 外文期刊>Cell death and differentiation >Caspase-3 cleaves Apaf-1 into an approximately 30 kDa fragment that associates with an inappropriately oligomerized and biologically inactive approximately 1.4 MDa apoptosome complex.
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Caspase-3 cleaves Apaf-1 into an approximately 30 kDa fragment that associates with an inappropriately oligomerized and biologically inactive approximately 1.4 MDa apoptosome complex.

机译:Caspase-3将Apaf-1切割成大约30 kDa的片段,该片段与不适当的寡聚和具有生物活性的大约1.4 MDa凋亡小体复合物相关。

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Cytochrome c and dATP/ATP induce oligomerization of Apaf-1 into two distinct apoptosome complexes: an approximately 700 kDa complex, which recruits and activates caspases-9, -3 and -7, and an approximately 1.4 MDa complex, which recruits and processes caspase-9, but does not efficiently activate effector caspases. While searching for potential inhibitors of the approximately 1.4 MDa apoptosome complex, we observed an approximately 30 kDa Apaf-1 immunoreactive fragment that was associated exclusively with the inactive complex. We subsequently determined that caspase-3 cleaved Apaf-1 within its CED-4 domain (SVTD(271) downward arrowS) in both dATP-activated lysates and apoptotic cells to form a prominent approximately 30 kDa (p30) N-terminal fragment. Purified recombinant Apaf-1 p30 fragment weakly inhibited dATP-dependent activation of caspase-3 in vitro. However, more importantly, prevention of endogenous formation of the p30 fragment did not stimulate latent effector caspase processing activity in the large complex. Similarly, the possibility that XIAP, an inhibitor of apoptosis protein (IAP), was responsible for the inactivity of the approximately 1.4 MDa complex was excluded as immunodepletion of this caspase inhibitor failed to relieve the inhibition. However, selective proteolytic digestion of the approximately 1.4 MDa and approximately 700 kDa complexes showed that Apaf-1 was present in conformationally distinct forms in these two complexes. Therefore, the inability of the approximately 1.4 MDa apoptosome complex to process effector caspases most likely results from inappropriately folded or oligomerized Apaf-1.
机译:细胞色素c和dATP / ATP诱导Apaf-1寡聚为两种不同的凋亡小体复合物:约700 kDa的复合物,募集并激活caspases-9,-3和-7,以及约1.4 MDa的复合物,募集并处理caspase。 -9,但不能有效激活效应子胱天蛋白酶。在寻找约1.4 MDa凋亡复合物的潜在抑制剂时,我们观察到约30 kDa Apaf-1免疫反应性片段,该片段仅与无活性复合物相关。随后,我们确定caspase-3在dATP激活的裂解物和凋亡细胞中均在其CED-4域(SVTD(271)向下箭头S)中切割了Apaf-1,形成了一个大约30 kDa(p30)的N末端片段。纯化的重组Apaf-1 p30片段在体外微弱抑制caspase-3的dATP依赖性激活。但是,更重要的是,预防p30片段的内源性形成并不会刺激大型复合物中潜在的效应子caspase加工活性。同样,排除了凋亡蛋白(IAP)抑制剂XIAP引起大约1.4 MDa复合物失活的可能性,因为这种半胱天冬酶抑制剂的免疫耗竭未能缓解这种抑制作用。但是,约1.4 MDa和约700 kDa复合物的选择性蛋白水解消化显示,Apaf-1在这两种复合物中以构象上不同的形式存在。因此,大约1.4 MDa的凋亡小体复合物不能处理效应子胱天蛋白酶最可能是由于折叠不当或寡聚的Apaf-1造成的。

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