State Key Laboratory of Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Dev Cell. 2013 Jun 24;25(6):636-44. doi: 10.1016/j.devcel.2013.05.006. Epub 2013 Jun 6.
The Cubitus interruptus (Ci)/Gli family of transcription factors can be degraded either completely or partially from a full-length form (Ci155/Gli(FL)) to a truncated repressor (Ci75/Gli(R)) by proteasomes to mediate Hedgehog (Hh) signaling. The mechanism by which proteasomes distinguish ubiquitinated Ci/Gli to carry out complete versus partial degradation is not known. Here, we show that Ter94 ATPase and its mammalian counterpart, p97, are involved in processing Ci and Gli3 into Ci75 and Gli3(R), respectively. Ter94 regulates the partial degradation of ubiquitinated Ci by Cul1-Slimb-based E3 ligase through its adaptors Ufd1-like and dNpl4. We demonstrate that Cul1-Slimb-based E3 ligase, but not Cul3-Rdx-based E3 ligase, modifies Ci by efficient addition of K11-linked ubiquitin chains. Ter94(Ufd1-like/dNpl4) complex interacts directly with Cul1-Slimb, and, intriguingly, it prefers K11-linked ubiquitinated Ci. Thus, Ter94 ATPase and K11-linked ubiquitination in Ci contribute to the selectivity by proteasomes for partial degradation.
Cubitus interruptus (Ci)/Gli 家族转录因子可通过蛋白酶体从全长形式 (Ci155/Gli(FL)) 完全或部分降解为截短的阻遏物 (Ci75/Gli(R)),从而介导 Hedgehog (Hh) 信号通路。蛋白酶体区分泛素化的 Ci/Gli 以进行完全降解与部分降解的机制尚不清楚。本文中,作者发现 Ter94 ATP 酶及其哺乳动物同源物 p97 分别参与 Ci 和 Gli3 加工为 Ci75 和 Gli3(R)。Ter94 通过其衔接蛋白 Ufd1 样和 dNpl4 调控 Cul1-Slimb 基 E3 连接酶介导的泛素化 Ci 的部分降解。作者证明,Cul1-Slimb 基 E3 连接酶而非 Cul3-Rdx 基 E3 连接酶通过有效的 K11 连接泛素链修饰 Ci。Ter94(Ufd1 样/dNpl4) 复合物与 Cul1-Slimb 直接相互作用,并且,有趣的是,它优先与 K11 连接的泛素化 Ci 相互作用。因此,Ter94 ATP 酶和 Ci 中的 K11 连接泛素化有助于蛋白酶体对部分降解的选择性。