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首页> 外文期刊>PLoS Genetics >An inhibitory mono-ubiquitylation of the Drosophila initiator caspase Dronc functions in both apoptotic and non-apoptotic pathways
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An inhibitory mono-ubiquitylation of the Drosophila initiator caspase Dronc functions in both apoptotic and non-apoptotic pathways

机译:在凋亡和非凋亡途径中,果蝇引发剂Caspase Dronc函数的抑制单胞嘧啶功能

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摘要

Apoptosis is an evolutionary conserved cell death mechanism, which requires activation of initiator and effector caspases. The Drosophila initiator caspase Dronc, the ortholog of mammalian Caspase-2 and Caspase-9, has an N-terminal CARD domain that recruits Dronc into the apoptosome for activation. In addition to its role in apoptosis, Dronc also has non-apoptotic functions such as compensatory proliferation. One mechanism to control the activation of Dronc is ubiquitylation. However, the mechanistic details of ubiquitylation of Dronc are less clear. For example, monomeric inactive Dronc is subject to non-degradative ubiquitylation in living cells, while ubiquitylation of active apoptosome-bound Dronc triggers its proteolytic degradation in apoptotic cells. Here, we examined the role of non-degradative ubiquitylation of Dronc in living cells in vivo, i.e. in the context of a multi-cellular organism. Our in vivo data suggest that in living cells Dronc is mono-ubiquitylated on Lys78 (K78) in its CARD domain. This ubiquitylation prevents activation of Dronc in the apoptosome and protects cells from apoptosis. Furthermore, K78 ubiquitylation plays an inhibitory role for non-apoptotic functions of Dronc. We provide evidence that not all of the non-apoptotic functions of Dronc require its catalytic activity. In conclusion, we demonstrate a mechanism whereby Dronc’s apoptotic and non-apoptotic activities can be kept silenced in a non-degradative manner through a single ubiquitylation event in living cells.
机译:细胞凋亡是一种进化保守的细胞死亡机制,需要激活引发剂和效应性胱天冬酶。果蝇引发剂Caspase Dronc,哺乳动物Caspase-2和Caspase-9的矫正,具有N-末端卡结构域,其促进Dronc进入凋亡器以进行激活。除了其在细胞凋亡中的作用外,Dronc还具有非凋亡功能,例如补偿增殖。一种控制DRONC激活的一种机制是泛曲。然而,DRONC的泛胀气的机械细节较小。例如,单体活性DrONC在活细胞中受到非降解的泛菌化,而活性凋亡的DrONC的泛醌突出凋亡细胞中的蛋白水解降解。在这里,我们研究了Dronc在体内活细胞中的非降解u相符的作用,即在多细胞生物体的背景下。我们的体内数据表明,在活细胞中,Dronc在其卡域中的Lys78(K78)上是单一 - ubiquitylated。这种泛互替纳替妥防止了凋亡组中的DRONC并保护细胞免受凋亡。此外,K78 ubiquitylation对Dronc的非凋亡功能起着抑制作用。我们提供证据表明,并非Dronc的所有非凋亡功能都需要其催化活性。总之,我们证明了一种机制,可以通过在活细胞中的单一泛互相活动中以非降解方式保持沉默的机制。

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