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首页> 外文期刊>Nature Communications >An allosteric conduit facilitates dynamic multisite substrate recognition by the SCFCdc4 ubiquitin ligase
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An allosteric conduit facilitates dynamic multisite substrate recognition by the SCFCdc4 ubiquitin ligase

机译:变构导管通过SCF Cdc4 泛素连接酶促进动态多位底物识别

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摘要

The ubiquitin ligase SCFCdc4 mediates phosphorylation-dependent elimination of numerous substrates by binding one or more Cdc4 phosphodegrons (CPDs). Methyl-based NMR analysis of the Cdc4 WD40 domain demonstrates that Cyclin E, Sic1 and Ash1 degrons have variable effects on the primary Cdc4WD40 binding pocket. Unexpectedly, a Sic1-derived multi-CPD substrate (pSic1) perturbs methyls around a previously documented allosteric binding site for the chemical inhibitor SCF-I2. NMR cross-saturation experiments confirm direct contact between pSic1 and the allosteric pocket. Phosphopeptide affinity measurements reveal negative allosteric communication between the primary CPD and allosteric pockets. Mathematical modelling indicates that the allosteric pocket may enhance ultrasensitivity by tethering pSic1 to Cdc4. These results suggest negative allosteric interaction between two distinct binding pockets on the Cdc4WD40 domain may facilitate dynamic exchange of multiple CPD sites to confer ultrasensitive dependence on substrate phosphorylation.
机译:泛素连接酶SCF Cdc4 通过结合一个或多个Cdc4磷酸脱氢酶(CPD)介导许多底物的磷酸化依赖性消除。 Cdc4 WD40结构域的基于甲基的NMR分析表明,Cyclin E,Sic1和Ash1 degrons对初级Cdc4 WD40 结合口袋具有可变的影响。出乎意料的是,Sic1衍生的多CPD底物(pSic1)扰乱了先前记录的化学抑制剂SCF-1的变构结合位点周围的甲基。 NMR交叉饱和实验证实了pSic1和变构口袋之间的直接接触。磷酸肽亲和力测量揭示了原发性CPD和变构口袋之间的负变构通讯。数学模型表明,变构口袋可能通过将pSic1束缚到Cdc4来增强超敏性。这些结果表明,Cdc4 WD40 域上两个不同结合口袋之间的负变构相互作用可能促进多个CPD位点的动态交换,从而赋予对底物磷酸化的超敏感依赖性。

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