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Ubr3 E3 ligase regulates apoptosis by controlling the activity of DIAP1 in Drosophila

机译:Ubr3 E3连接酶通过控制果蝇中DIAP1的活性来调节细胞凋亡

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摘要

Apoptosis has essential roles in a variety of cellular and developmental processes. Although the pathway is well studied, how the activities of individual components in the pathway are regulated is less understood. In Drosophila, a key component in apoptosis is Drosophila inhibitor of apoptosis protein 1 (DIAP1), which is required to prevent caspase activation. Here, we demonstrate that Drosophila CG42593 (ubr3), encoding the homolog of mammalian UBR3, has an essential role in regulating the apoptosis pathway. We show that loss of ubr3 activity causes caspase-dependent apoptosis in Drosophila eye and wing discs. Our genetic epistasis analyses show that the apoptosis induced by loss of ubr3 can be suppressed by loss of initiator caspase Drosophila Nedd2-like caspase (Dronc), or by ectopic expression of the apoptosis inhibitor p35, but cannot be rescued by overexpression of DIAP1. Importantly, we show that the activity of Ubr3 in the apoptosis pathway is not dependent on its Ring-domain, which is required for its E3 ligase activity. Furthermore, we find that through the UBR-box domain, Ubr3 physically interacts with the neo-epitope of DIAP1 that is exposed after caspase-mediated cleavage. This interaction promotes the recruitment and ubiquitination of substrate caspases by DIAP1. Together, our data indicate that Ubr3 interacts with DIAP1 and positively regulates DIAP1 activity, possibly by maintaining its active conformation in the apoptosis pathway.
机译:凋亡在各种细胞和发育过程中具有重要作用。尽管对该途径进行了很好的研究,但对途径中各个成分的活性如何调控的了解却很少。在果蝇中,凋亡的关键成分是果蝇凋亡蛋白1(DIAP1)抑制剂,这是防止caspase激活所必需的。在这里,我们证明果蝇CG42593(ubr3),编码哺乳动物UBR3的同源物,在调节细胞凋亡途径中具有重要作用。我们表明,ubr3活性的丧失会导致果蝇眼和翼盘中caspase依赖性凋亡。我们的基因上位分析表明,ubr3缺失诱导的凋亡可以通过启动子胱天蛋白酶果蝇Nedd2样胱天蛋白酶(Dronc)的丢失或凋亡抑制剂p35的异位表达来抑制,但不能通过DIAP1的过表达来挽救。重要的是,我们显示了Ubr3在细胞凋亡途径中的活性并不依赖于其E3连接酶活性所必需的环结构域。此外,我们发现通过UBR框域,Ubr3与半胱天冬酶介导的裂解后暴露的DIAP1的新表位发生物理相互作用。这种相互作用促进了DIAP1对底物胱天蛋白酶的募集和泛素化。总之,我们的数据表明Ubr3与DIAP1相互作用并正向调节DIAP1活性,可能是通过维持其在凋亡途径中的活性构象来实现的。

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