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首页> 外文期刊>American Journal of Physiology >The 1.4-MDa apoptosome is a critical intermediate in apoptosome maturation.
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The 1.4-MDa apoptosome is a critical intermediate in apoptosome maturation.

机译:1.4-MDa凋亡小体是凋亡小体成熟的关键中间体。

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Previously, we demonstrated that both 150 mM KCl and alkaline pH inhibit cytochrome c-mediated activation of procaspase-3 in a unique manner. To determine the mechanism of inhibition, we analyzed the effect of KCl and alkaline pH on the formation of apoptosomes (a large complex consisting of cytochrome c, Apaf-1, and procaspase-9/caspase-9) in vitro. Our results suggest that an initial approximately 700-kDa apoptosome matures through a 1.4-MDa intermediate before a approximately 700-kDa apoptosome is reformed and procaspase-3 is activated. We further demonstrate that 150 mM KCl interferes with the conversion of the initial approximately 700-kDa apoptosome to the 1.4-MDa intermediate, while alkaline pH "traps" the apoptosome in the 1.4-MDa intermediate. Analysis of the cleaved state of procaspase-9 and procaspase-3 suggests that the 1.4-MDa intermediate may be required for cleavage of procaspase-9. Consistent with these results, in vivo data suggest that blocking acidification during the induction of apoptosis inhibits activation of procaspase-3. On the basis of these results, we propose a model of apoptosome maturation.
机译:以前,我们证明了150 mM KCl和碱性pH均以独特的方式抑制细胞色素c介导的procaspase-3活化。为了确定抑制的机制,我们在体外分析了KCl和碱性pH对凋亡小体(由细胞色素c,Apaf-1和procaspase-9 / caspase-9组成的大复合体)形成的影响。我们的研究结果表明,最初的约700kDa的凋亡小体通过1.4-MDa中间体成熟,然后重整了约700kda的凋亡小体并激活了procaspase-3。我们进一步证明,150 mM KCl会干扰最初大约700 kDa的凋亡小体向1.4-MDa中间体的转化,而碱性pH值将凋亡小体“捕获”在1.4-MDa中间体中。对procaspase-9和procaspase-3的切割状态的分析表明,1.4-MDa中间体可能需要procaspase-9的切割。与这些结果一致,体内数据表明在诱导凋亡过程中阻断酸化作用会抑制procaspase-3的激活。基于这些结果,我们提出了凋亡成熟的模型。

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