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Cand1 promotes assembly of new SCF complexes through dynamic exchange of F box proteins

机译:Cand1通过动态交换F框蛋白促进新SCF复合物的组装

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摘要

The modular SCF (Skp1, cullin, and F box) ubiquitin ligases feature a large family of F box protein substrate receptors that enable recognition of diverse targets. However, how the repertoire of SCF complexes is sustained remains unclear. Real-time measurements of formation and disassembly indicate that SCF~(Fbxw7) is extraordinarily stable, but, in the Nedd8-deconjugated state, the cullin-binding protein Cand1 augments its dissociation by one-million-fold. Binding and ubiquitylation assays show that Cand1 is a protein exchange factor that accelerates the rate at which Cul1-Rbx1 equilibrates with multiple F box protein-Skp1 modules. Depletion of Cand1 from cells impedes recruitment of new F box proteins to pre-existing Cul1 and profoundly alters the cellular landscape of SCF complexes. We suggest that catalyzed protein exchange may be a general feature of dynamic macromolecular machines and propose a hypothesis for how substrates, Nedd8, and Cand1 collaborate to regulate the cellular repertoire of SCF complexes.
机译:模块化SCF(Skp1,cullin和F盒)泛素连接酶具有一系列F盒蛋白质底物受体家族,可识别多种靶标。然而,尚不清楚如何维持SCF复合物库。实时测量的形成和反汇编表明SCF〜(Fbxw7)非常稳定,但是在Nedd8结合状态下,草木素结合蛋白Cand1使其解离增加了100倍。结合和泛素化分析表明,Cand1是一种蛋白质交换因子,可加快Cul1-Rbx1与多个F盒蛋白-Skp1模块平衡的速率。细胞中Cand1的消耗阻止了新的F盒蛋白募集到预先存在的Cul1中,并深刻改变了SCF复合物的细胞景观。我们建议催化的蛋白质交换可能是动态大分子机器的一般特征,并提出了关于底物,Nedd8和Cand1如何协同调节SCF复合物的细胞库的假设。

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