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The E1 ubiquitin-activating enzyme Uba1 in Drosophila controls apoptosis autonomously and tissue growth non-autonomously

机译:果蝇中的E1泛素激活酶Uba1自主控制细胞凋亡和非自主地控制组织生长

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摘要

Ubiquitination is an essential process regulating turnover of proteins for basic cellular processes such as the cell cycle and cell death (apoptosis). Ubiquitination is initiated by ubiquitin-activating enzymes (E1), which activate and transfer ubiquitin to ubiquitin-conjugating enzymes (E2). Conjugation of target proteins with ubiquitin is then mediated by ubiquitin ligases (E3). Ubiquitination has been well characterized using mammalian cell lines and yeast genetics. However, the consequences of partial or complete loss of ubiquitin conjugation in a multi-cellular organism are not well understood. Here, we report the characterization of Uba1, the only E1 in Drosophila. We found that weak and strong Uba1 alleles behave genetically differently with sometimes opposing phenotypes. Whereas weak Uba1 alleles protect cells from cell death, clones of strong Uba1 alleles are highly apoptotic. Strong Uba1 alleles cause cell cycle arrest which correlates with failure to reduce cyclin levels. Surprisingly, clones of strong Uba1 mutants stimulate neighboring wild-type tissue to undergo cell division in a non-autonomous manner giving rise to overgrowth phenotypes of the mosaic fly. We demonstrate that the non-autonomous overgrowth is caused by failure to downregulate Notch signaling in Uba1 mutant clones. In summary, the phenotypic analysis of Uba1 demonstrates that impaired ubiquitin conjugation has significant consequences for the organism, and may implicate Uba1 as a tumor suppressor gene.
机译:泛素化是调节基本细胞过程(例如细胞周期和细胞死亡(细胞凋亡))的蛋白质更新的必不可少的过程。泛素化由泛素激活酶(E1)引发,泛素激活酶将泛素激活并转移至泛素结合酶(E2)。然后通过泛素连接酶(E3)介导靶蛋白与泛素的缀合。使用哺乳动物细胞系和酵母遗传学已经很好地表征了泛素化。然而,在多细胞生物体中泛素结合的部分或全部丧失的后果尚不清楚。在这里,我们报告果蝇中唯一的E1 Uba1的特征。我们发现弱和强Uba1等位基因在遗传上表现不同,有时具有相反的表型。弱的Uba1等位基因可保护细胞免受细胞死亡,而强的Uba1等位基因的克隆则高度凋亡。强大的Uba1等位基因会导致细胞周期停滞,这与降低细胞周期蛋白水平的失败有关。出乎意料的是,强大的Uba1突变体的克隆以非自主的方式刺激邻近的野生型组织发生细胞分裂,从而导致马赛克果蝇的过度生长表型。我们证明了非自主的过度生长是由未能下调Uba1突变体克隆中的Notch信号引起的。总而言之,Uba1的表型分析表明泛素结合受损对生物体具有重大影响,并可能暗示Uba1作为肿瘤抑制基因。

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