Division of Biology, California Institute of Technology, Pasadena, California 91125, USA.
Nat Cell Biol. 2010 Dec;12(12):1177-85. doi: 10.1038/ncb2121. Epub 2010 Nov 14.
Substrates of the N-end rule pathway are recognized by the Ubr1 E3 ubiquitin ligase through their destabilizing amino-terminal residues. Our previous work showed that the Ubr1 E3 and the Ufd4 E3 together target an internal degradation signal (degron) of the Mgt1 DNA repair protein. Ufd4 is an E3 enzyme of the ubiquitin-fusion degradation (UFD) pathway that recognizes an N-terminal ubiquitin moiety. Here we show that the RING-type Ubr1 E3 and the HECT-type Ufd4 E3 interact, both physically and functionally. Although Ubr1 can recognize and polyubiquitylate an N-end rule substrate in the absence of Ufd4, the Ubr1-Ufd4 complex is more processive in that it produces a longer substrate-linked polyubiquitin chain. Conversely, Ubr1 can function as a polyubiquitylation-enhancing component of the Ubr1-Ufd4 complex in its targeting of UFD substrates. We also found that Ubr1 can recognize the N-terminal ubiquitin moiety. These and related advances unify two proteolytic systems that have been studied separately for two decades.
N 端规则途径的底物通过其不稳定的氨基末端残基被 Ubr1 E3 泛素连接酶识别。我们之前的工作表明,Ubr1 E3 和 Ufd4 E3 一起靶向 Mgt1 DNA 修复蛋白的内部降解信号(degron)。Ufd4 是泛素融合降解(UFD)途径的 E3 酶,可识别氨基末端的泛素部分。在这里,我们表明 RING 型 Ubr1 E3 和 HECT 型 Ufd4 E3 相互作用,无论是在物理上还是在功能上。尽管 Ubr1 可以在没有 Ufd4 的情况下识别和多泛素化 N 端规则底物,但 Ubr1-Ufd4 复合物更具连续性,因为它产生更长的底物连接的多泛素链。相反,Ubr1 可以作为 Ubr1-Ufd4 复合物在靶向 UFD 底物中的多泛素化增强成分发挥作用。我们还发现 Ubr1 可以识别氨基末端的泛素部分。这些和相关的进展统一了两个已经分别研究了二十年的蛋白水解系统。