Cullin-dependent ubiquitin ligases regulate a variety of cellular and developmental processes by recruiting specific proteins for ubiquitin-mediated degradation. Cullin proteins form a scaffold for two functional modules: a catalytic module comprised of a small RING domain protein Roc1/Rbx1 and a ubiquitin-conjugating enzyme (E2), and a substrate recruitment module containing one or more proteins that bind to and bring the substrate in proximity to the catalytic module. Here, we present evidence that the three Drosophila Roc proteins are not functionally equivalent. Mutation of Roc1a causes lethality that cannot be rescued by expression of Roc1b or Roc2 by using the Roc1a promoter. Roc1a mutant cells hyperaccumulate Cubitus interruptus, a transcription factor that mediates Hedgehog signaling. This phenotype is not rescued by expression of Roc2 and only partially by expression of Roc1b. Targeted disruption of Roc1b causes male sterility that is partially rescued by expression of Roc1a by using the Roc1b promoter, but not by similar expression of Roc2. These data indicate that Roc proteins play nonredundant roles during development. Coimmunoprecipitation followed by Western or mass spectrometric analysis indicate that the three Roc proteins preferentially bind certain Cullins, providing a possible explanation for the distinct biological activities of each Drosophila Roc/Rbx.

译文

:Cullin依赖性泛素连接酶通过募集特定蛋白进行泛素介导的降解来调节多种细胞和发育过程。 Cullin蛋白形成两个功能模块的支架:一个由小的RING域蛋白Roc1 / Rbx1和泛素结合酶(E2)组成的催化模块,以及一个底物募集模块,其中包含一个或多个与底物结合并带来底物的蛋白质。在催化模块附近。在这里,我们提供证据表明三种果蝇Roc蛋白在功能上不相同。 Roc1a的突变会导致致命性,而使用Roc1a启动子则无法通过表达Roc1b或Roc2挽救其致死性。 Roc1a突变细胞过度积累Cubitus interruptus,一种介导Hedgehog信号传导的转录因子。 Roc2的表达不能挽救这种表型,Roc1b的表达只能挽救一部分。 Roc1b的靶向破坏会导致雄性不育,通过使用Roc1b启动子表达Roc1a可部分挽救雄性不育,而不是通过类似的Roc2表达来恢复。这些数据表明,Roc蛋白在发育过程中起着非冗余的作用。免疫共沉淀后再进行Western或质谱分析表明,这三种Roc蛋白优先结合某些Cullins,为每种果蝇Roc / Rbx的独特生物活性提供了可能的解释。

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