Molecular Medicine, The Hospital for Sick Children, Toronto, ON M5G 0A4, Canada.
Department of Physics, Chemistry and Biology, Linköping University, 58183 Linköping, Sweden.
Structure. 2018 Jan 2;26(1):28-39.e2. doi: 10.1016/j.str.2017.11.003. Epub 2017 Dec 7.
Many regulatory proteins, including the transcription factor c-Jun, are highly enriched in disordered protein regions that govern growth, division, survival, differentiation, and response to signals. The stability of c-Jun is controlled by poorly understood regulatory interactions of its disordered region with both the E3 ubiquitin ligase SCF and prolyl cis-trans isomerase Pin1. We use nuclear magnetic resonance and fluorescence studies of c-Jun to demonstrate that multisite c-Jun phosphorylation is required for high-affinity interaction with Fbw7. We show that the Pin1 WW and PPIase domains interact in a dynamic complex with multiply phosphorylated c-Jun. Importantly, Pin1 isomerizes a pSer-Pro peptide bond at the c-Jun N terminus that affects binding to Fbw7 and thus modulates the ubiquitin-mediated degradation of c-Jun. Our findings support the general principle that multiple weak binding motifs within disordered regions can synergize to yield high-affinity interactions and provide rapidly evolvable means to build and fine-tune regulatory events.
许多调节蛋白,包括转录因子 c-Jun,在高度无序的蛋白质区域中高度富集,这些区域控制着生长、分裂、存活、分化和对信号的反应。c-Jun 的稳定性受到其无序区域与 E3 泛素连接酶 SCF 和脯氨酰顺反异构酶 Pin1 之间的调节相互作用的影响,这些相互作用的机制还不清楚。我们使用核磁共振和荧光研究 c-Jun,证明多位点 c-Jun 磷酸化是与 Fbw7 高亲和力相互作用所必需的。我们表明,Pin1 的 WW 和 PPIase 结构域与多磷酸化的 c-Jun 形成动态复合物。重要的是,Pin1 使 c-Jun N 端的 pSer-Pro 肽键发生异构化,这影响了与 Fbw7 的结合,从而调节 c-Jun 的泛素介导的降解。我们的发现支持了这样一个普遍原则,即在无序区域内的多个弱结合基序可以协同作用,产生高亲和力的相互作用,并提供快速进化的手段来构建和微调调节事件。