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Dynein links engulfment and execution of apoptosis via CED-4/Apaf1 in C. elegans

机译:动力蛋白通过线虫中的CED-4 / Apaf1链接吞噬和执行凋亡

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摘要

Apoptosis ensures removal of damaged cells and helps shape organs during development by removing excessive cells. To prevent the intracellular content of the apoptotic cells causing damage to surrounding cells, apoptotic cells are quickly cleared by engulfment. Tight regulation of apoptosis and engulfment is needed to prevent several pathologies such as cancer, neurodegenerative and autoimmune diseases. There is increasing evidence that the engulfment machinery can regulate the execution of apoptosis. However, the underlying molecular mechanisms are poorly understood. We show that dynein mediates cell non-autonomous cross-talk between the engulfment and apoptotic programs in the Caenorhabditis elegans germline. Dynein is an ATP-powered microtubule-based molecular motor, built from several subunits. Dynein has many diverse functions including transport of cargo around the cell. We show that both dynein light chain 1 (DLC-1) and dynein heavy chain 1 (DHC-1) localize to the nuclear membrane inside apoptotic germ cells in C. elegans. Strikingly, lack of either DLC-1 or DHC-1 at the nuclear membrane inhibits physiological apoptosis specifically in mutants defective in engulfment. This suggests that a cell fate determining dialogue takes place between engulfing somatic sheath cells and apoptotic germ cells. The underlying mechanism involves the core apoptotic protein CED-4/Apaf1, as we find that DLC-1 and the engulfment protein CED-6/GULP are required for the localization of CED-4 to the nuclear membrane of germ cells. A better understanding of the communication between the engulfment machinery and the apoptotic program is essential for identifying novel therapeutic targets in diseases caused by inappropriate engulfment or apoptosis.
机译:细胞凋亡可确保去除受损细胞,并通过去除过多的细胞帮助发育过程中的器官成形。为了防止凋亡细胞的细胞内含量引起对周围细胞的损害,通过吞噬迅速清除凋亡细胞。需要严密调节细胞凋亡和吞噬以预防几种病理,例如癌症,神经退行性疾病和自身免疫性疾病。越来越多的证据表明吞噬机制可以调节细胞凋亡的执行。然而,人们对潜在的分子机制了解甚少。我们表明,动力蛋白在秀丽隐杆线虫种系的吞噬和凋亡程序之间介导细胞非自主的串扰。 Dynein是由ATP驱动的基于微管的分子马达,由多个亚基构建而成。动力蛋白具有许多不同的功能,包括在单元周围运输货物。我们显示,达因轻链1(DLC-1)和达因重链1(DHC-1)都位于线虫凋亡生殖细胞内的核膜。令人惊讶的是,核膜上缺乏DLC-1或DHC-1会特别抑制吞噬缺陷的突变体的生理凋亡。这表明确定吞噬体细胞鞘细胞和凋亡生殖细胞之间发生对话的细胞命运。潜在的机制涉及核心凋亡蛋白CED-4 / Apaf1,因为我们发现DLC-1和吞噬蛋白CED-6 / GULP是CED-4定位到生殖细胞核膜所必需的。更好地了解吞噬机制与凋亡程序之间的通讯对于识别由不适当吞噬或凋亡引起的疾病中的新型治疗靶点至关重要。

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