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The UBA domains of NUB1L are required for binding but not for accelerated degradation of the ubiquitin-like modifier FAT10

机译:NUB1L的UBa结构域是结合所必需的,但不是加速降解泛素样修饰物FaT10

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摘要

Proteins selected for degradation are labeled with multiple molecules of ubiquitin and are subsequently cleaved by the 26 S proteasome. A family of proteins containing at least one ubiquitin-associated (UBA) domain and one ubiquitin-like (UBL) domain have been shown to act as soluble ubiquitin receptors of the 26 S proteasome and introduce a new level of specificity into the degradation system. They bind ubiquitylated proteins via their UBA domains and the 26 S proteasome via their UBL domain and facilitate the contact between substrate and protease. NEDD8 ultimate buster-1 long (NUB1L) belongs to this class of proteins and contains one UBL and three UBA domains. We recently reported that NUB1L interacts with the ubiquitin-like modifier FAT10 and accelerates its degradation and that of its conjugates. Here we show that a deletion mutant of NUB1L lacking the UBL domain is still able to bind FAT10 but not the proteasome and no longer accelerates FAT10 degradation. A version of NUB1L lacking all three UBA domains, on the other hand, looses the ability to bind FAT10 but is still able to interact with the proteasome and accelerates the degradation of FAT10. The degradation of a FAT10 mutant containing only the C-terminal UBL domain is also still accelerated by NUB1L, even though the two proteins do not interact. In addition, we show that FAT10 and either one of its UBL domains alone can interact directly with the 26 S proteasome. We propose that NUB1L not only acts as a linker between the 26 S proteasome and ubiquitin-like proteins, but also as a facilitator of proteasomal degradation.
机译:选择用于降解的蛋白质用泛素的多个分子标记,随后被26 S蛋白酶体切割。包含至少一个泛素相关(UBA)结构域和一个泛素样(UBL)结构域的蛋白质家族已显示出可作为26 S蛋白酶体的可溶性泛素受体,并将新的特异性水平引入降解系统。它们通过其UBA结构域结合泛素化的蛋白质,并通过其UBL结构域结合26 S蛋白酶体,并促进底物和蛋白酶之间的接触。 NEDD8最终buster-1 long(NUB1L)属于此类蛋白,包含一个UBL和三个UBA结构域。我们最近报道了NUB1L与泛素样修饰剂FAT10相互作用,并加速了其降解及其结合物的降解。在这里,我们显示缺少UBL结构域的NUB1L缺失突变体仍然能够结合FAT10,但不能结合蛋白酶体,并且不再加速FAT10降解。另一方面,缺少所有三个UBA域的NUB1L版本会失去结合FAT10的能力,但仍能够与蛋白酶体相互作用并加速FAT10的降解。即使两个蛋白质不相互作用,NUB1L仍可加速仅包含C端UBL结构域的FAT10突变体的降解。此外,我们显示,FAT10及其一个UBL结构域之一可以单独与26 S蛋白酶体直接相互作用。我们建议,NUB1L不仅充当26 S蛋白酶体和泛素样蛋白之间的连接子,而且还作为蛋白酶体降解的促进剂。

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