Cancer Research UK London Research Institute, Clare Hall Laboratories, Blanche Lane, South Mimms EN6 3LD, United Kingdom.
Proc Natl Acad Sci U S A. 2010 Apr 27;107(17):7704-9. doi: 10.1073/pnas.0908764107. Epub 2010 Apr 12.
Polyubiquitin chains mediate a variety of biological processes, ranging from proteasomal targeting to inflammatory signaling and DNA repair. Their functional diversity is in part due to their ability to adopt distinct conformations, depending on how the ubiquitin moieties within the chain are linked. We have used the eukaryotic replication clamp PCNA, a natural target of lysine (K)63-linked polyubiquitylation, as a model substrate to directly compare the consequences of modification by different types of polyubiquitin chains. We show here that K63-polyubiquitylated PCNA is not subject to proteasomal degradation. In contrast, linear, noncleavable ubiquitin chains do not promote DNA damage tolerance, but function as general degradation signals. We find that a linear tetraubiquitin chain is sufficient to afford proteasomal targeting through the Cdc48-Npl4-Ufd1 complex without further modification. Although a minimum chain length of four is required for degradation, a longer chain does not further reduce the half-life of the respective substrate protein. Our results suggest that the cellular machinery responsible for recognition of ubiquitylated substrates can make subtle distinctions between highly similar forms of the polyubiquitin signal.
多聚泛素链介导了多种生物过程,范围从蛋白酶体靶向到炎症信号和 DNA 修复。它们的功能多样性部分归因于它们能够采用不同的构象,具体取决于链内的泛素部分如何连接。我们使用真核复制夹子 PCNA(赖氨酸(K)63 连接的多泛素化的天然靶标)作为模型底物,直接比较不同类型的多泛素链修饰的后果。我们在这里表明,K63 多泛素化的 PCNA 不受蛋白酶体降解的影响。相比之下,线性、不可切割的泛素链不能促进 DNA 损伤耐受,但作为一般降解信号发挥作用。我们发现,线性四聚泛素链足以通过 Cdc48-Npl4-Ufd1 复合物提供蛋白酶体靶向,而无需进一步修饰。尽管降解需要至少四个链长,但更长的链不会进一步缩短各自底物蛋白的半衰期。我们的结果表明,负责识别泛素化底物的细胞机制可以在高度相似的多泛素信号形式之间做出微妙的区分。