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Fbw7 dimerization determines the specificity and robustness of substrate degradation

机译:Fbw7二聚化确定底物降解的特异性和鲁棒性

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摘要

The Fbw7 tumor suppressor targets a broad network of proteins for ubiquitylation. Here we show critical functions for Fbw7 dimerization in regulating the specificity and robustness of degradation. Dimerization enables Fbw7 to target substrates through concerted binding to two suboptimal and independent recognition sites. Accordingly, an endogenous dimerization-deficient Fbw7 mutation stabilizes suboptimal substrates. Dimerization increases Fbw7's robustness by preserving its function in the setting of mutations that disable Fbw7 monomers, thereby buffering against pathogenic mutations. Finally, dimerization regulates Fbw7 stability, and this likely involves Fbw7 trans-autoubiquitylation. Our study reveals novel functions of Fbw7 dimerization and an unanticipated complexity in substrate degradation.
机译:Fbw7肿瘤抑制因子靶向广泛的蛋白网络以进行泛素化。在这里,我们展示了Fbw7二聚化在调节降解的特异性和鲁棒性方面的关键功能。二聚化使Fbw7通过与两个次优和独立识别位点的协同结合而靶向底物。因此,内源性二聚化缺陷的Fbw7突变稳定了次优的底物。二聚化通过保留Fbw7单体在突变中的功能来增强Fbw7的健壮性,从而使Fbw7单体失能,从而缓冲病原性突变。最后,二聚化调节Fbw7的稳定性,这可能涉及Fbw7反式自体泛素化。我们的研究揭示了Fbw7二聚化的新功能以及底物降解中意料之外的复杂性。

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