首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ubiquitin-conjugating Enzyme Cdc34 and Ubiquitin Ligase Skp1-Cullin-F-box Ligase (SCF) Interact through Multiple Conformations
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Ubiquitin-conjugating Enzyme Cdc34 and Ubiquitin Ligase Skp1-Cullin-F-box Ligase (SCF) Interact through Multiple Conformations

机译:泛素结合酶Cdc34和泛素连接酶Skp1-Cullin-F-box连接酶(SCF)通过多种构型相互作用

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摘要

In the ubiquitin-proteasome system, protein substrates are degraded via covalent modification by a polyubiquitin chain. The polyubiquitin chain must be assembled rapidly in cells, because a chain of at least four ubiquitins is required to signal for degradation, and chain-editing enzymes in the cell may cleave premature polyubiquitin chains before achieving this critical length. The ubiquitin-conjugating enzyme Cdc34 and ubiquitin ligase SCF are capable of building polyubiquitin chains onto protein substrates both rapidly and processively; this may be explained at least in part by the atypically fast rate of Cdc34 and SCF association. This rapid association has been attributed to electrostatic interactions between the acidic C-terminal tail of Cdc34 and a feature on SCF called the basic canyon. However, the structural aspects of the Cdc34-SCF interaction and how they permit rapid complex formation remain elusive. Here, we use protein cross-linking to demonstrate that the Cdc34-SCF interaction occurs in multiple conformations, where several residues from the Cdc34 acidic tail are capable of contacting a broad region of the SCF basic canyon. Similar patterns of cross-linking are also observed between Cdc34 and the Cul1 paralog Cul2, implicating the same mechanism for the Cdc34-SCF interaction in other members of the cullin-RING ubiquitin ligases. We discuss how these results can explain the rapid association of Cdc34 and SCF.
机译:在泛素-蛋白酶体系统中,蛋白质底物通过多泛素链通过共价修饰而降解。聚泛素链必须在细胞中快速组装,因为需要至少四个泛素链来发出降解信号,并且细胞中的链编辑酶可能会在达到该临界长度之前切割过早的泛素链。泛素结合酶Cdc34和泛素连接酶SCF能够快速和连续地在蛋白质底物上构建多聚泛素链。这至少可以通过Cdc34和SCF关联的非典型快率来解释。这种快速的联系归因于Cdc34的酸性C末端尾部与SCF上一个称为基本峡谷的特征之间的静电相互作用。但是,Cdc34-SCF相互作用的结构方面以及它们如何允许快速形成复合物仍然难以捉摸。在这里,我们使用蛋白质交联来证明Cdc34-SCF相互作用以多种构型发生,其中来自Cdc34酸性尾部的几个残基能够接触SCF基本峡谷的广阔区域。在Cdc34和Cul1旁系同源物Cul2之间也观察到相似的交联模式,这暗示了cullin-RING泛素连接酶的其他成员中Cdc34-SCF相互作用的机制相同。我们讨论这些结果如何解释Cdc34和SCF的快速关联。

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