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首页> 外文期刊>PLoS One >Cap-Independent Translation Promotes C. elegans Germ Cell Apoptosis through Apaf-1/CED-4 in a Caspase-Dependent Mechanism
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Cap-Independent Translation Promotes C. elegans Germ Cell Apoptosis through Apaf-1/CED-4 in a Caspase-Dependent Mechanism

机译:不依赖于帽的翻译以半胱天冬酶依赖性机制通过Apaf-1 / CED-4促进秀丽隐杆线虫生殖细胞凋亡。

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摘要

Apoptosis is a natural process during animal development for the programmed removal of superfluous cells. During apoptosis general protein synthesis is reduced, but the synthesis of cell death proteins is enhanced. Selective translation has been attributed to modification of the protein synthesis machinery to disrupt cap-dependent mRNA translation and induce a cap-independent mechanism. We have previously shown that disruption of the balance between cap-dependent and cap-independent C. elegans eIF4G isoforms (IFG-1 p170 and p130) by RNA interference promotes apoptosis in developing oocytes. Germ cell apoptosis was accompanied by the appearance of the Apaf-1 homolog, CED-4. Here we show that IFG-1 p170 is a native substrate of the worm executioner caspase, CED-3, just as mammalian eIF4GI is cleaved by caspase-3. Loss of Bcl-2 function (ced-9ts) in worms induced p170 cleavage in vivo, coincident with extensive germ cell apoptosis. Truncation of IFG-1 occurred at a single site that separates the cap-binding and ribosome-associated domains. Site-directed mutagenesis indicated that CED-3 processes IFG-1 at a non-canonical motif, TTTD456. Coincidentally, the recognition site was located 65 amino acids downstream of the newly mapped IFG-1 p130 start site suggesting that both forms support cap-independent initiation. Genetic evidence confirmed that apoptosis induced by loss of ifg-1 p170 mRNA was caspase (ced-3) and apoptosome (ced-4/Apaf-1) dependent. These findings support a new paradigm in which modal changes in protein synthesis act as a physiological signal to initiate cell death, rather than occur merely as downstream consequences of the apoptotic event.
机译:凋亡是动物发育期间用于程序性去除多余细胞的自然过程。在细胞凋亡期间,一般的蛋白质合成减少,但是细胞死亡蛋白质的合成增加。选择性翻译归因于蛋白质合成机制的修饰,以破坏依赖于帽的mRNA翻译并诱导不依赖帽的机制。以前我们已经表明,RNA干扰破坏帽依赖性和帽依赖性秀丽隐杆线虫eIF4G同工型(IFG-1 p170和p130)之间的平衡会促进发育中的卵母细胞凋亡。生殖细胞凋亡伴随着Apaf-1同源物CED-4的出现。在这里,我们显示IFG-1 p170是蠕虫执行者caspase CED-3的天然底物,就像哺乳动物eIF4GI被caspase-3切割一样。蠕虫中Bcl-2功能的缺失(ced-9ts)导致体内p170裂解,与广泛的生殖细胞凋亡相吻合。 IFG-1的截短发生在将帽结合和核糖体相关结构域分开的单个位点。定点诱变表明,CED-3以非经典基序TTTD456处理IFG-1。巧合的是,识别位点位于新定位的IFG-1 p130起始位点的下游65个氨基酸处,表明这两种形式均支持不依赖于帽的起始。遗传证据证实,ifg-1 p170 mRNA的丢失诱导的凋亡是caspase(ced-3)和凋亡小体(ced-4 / Apaf-1)依赖性的。这些发现支持了一种新的范例,其中蛋白质合成中的模式变化充当引发细胞死亡的生理信号,而不是仅仅作为凋亡事件的下游后果而发生。

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