首页> 美国卫生研究院文献>The Journal of Biological Chemistry >In silico modeling of the cryptic E2∼ubiquitin–binding site of E6-associated protein (E6AP)/UBE3A reveals the mechanism of polyubiquitin chain assembly
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In silico modeling of the cryptic E2∼ubiquitin–binding site of E6-associated protein (E6AP)/UBE3A reveals the mechanism of polyubiquitin chain assembly

机译:在计算机模拟中E6相关蛋白(E6AP)/ UBE3A的隐式E2〜泛素结合位点揭示了多泛素链组装的机制

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摘要

To understand the mechanism for assembly of Lys48-linked polyubiquitin degradation signals, we previously demonstrated that the E6AP/UBE3A ligase harbors two functionally distinct E2∼ubiquitin–binding sites: a high-affinity Site 1 required for E6AP Cys820∼ubiquitin thioester formation and a canonical Site 2 responsible for subsequent chain elongation. Ordered binding to Sites 1 and 2 is here revealed by observation of UbcH7∼ubiquitin–dependent substrate inhibition of chain formation at micromolar concentrations. To understand substrate inhibition, we exploited the PatchDock algorithm to model in silico UbcH7∼ubiquitin bound to Site 1, validated by chain assembly kinetics of selected point mutants. The predicted structure buries an extensive solvent-excluded surface bringing the UbcH7∼ubiquitin thioester bond within 6 Å of the Cys820 nucleophile. Modeling onto the active E6AP trimer suggests that substrate inhibition arises from steric hindrance between Sites 1 and 2 of adjacent subunits. Confirmation that Sites 1 and 2 function in trans was demonstrated by examining the effect of E6APC820A on wild-type activity and single-turnover pulse-chase kinetics. A cyclic proximal indexation model proposes that Sites 1 and 2 function in tandem to assemble thioester-linked polyubiquitin chains from the proximal end attached to Cys820 before stochastic en bloc transfer to the target protein. Non-reducing SDS-PAGE confirms assembly of the predicted Cys820-linked 125I-polyubiquitin thioester intermediate. Other studies suggest that Glu550 serves as a general base to generate the Cys820 thiolate within the low dielectric binding interface and Arg506 functions to orient Glu550 and to stabilize the incipient anionic transition state during thioester exchange.
机译:为了了解装配Lys 48 连锁的多聚泛素降解信号的机制,我们先前证明了E6AP / UBE3A连接酶具有两个功能不同的E2〜泛素结合位点:一个高亲和力位点1 E6AP Cys 820 〜泛素硫酯的形成和一个典型的位点2负责随后的链延长。通过观察UbcH7〜泛素依赖性底物在微摩尔浓度下抑制链形成,揭示了与位点1和2的有序结合。为了了解底物的抑制作用,我们利用PatchDock算法对结合位点1的计算机UbcH7〜泛素进行建模,并通过选择的点突变体的链组装动力学对其进行了验证。预测的结构埋藏了一个广泛的溶剂排斥表面,使UbcH7〜泛素硫酯键位于Cys 820 亲核试剂的6Å之内。对活性E6AP三聚体的建模表明底物抑制来自相邻亚基位点1和2之间的位阻。通过检查E6APC820A对野生型活性和单周脉冲追逐动力学的影响,证实了位点1和2在反式中的功能。一个循环的近端索引模型建议,位点1和2协同作用,以在随机整体转移到目标蛋白之前,从连接到Cys 820 的近端组装与硫酯连接的聚泛素链。非还原性SDS-PAGE证实了预测的Cys 820 -连接的 125 I-聚泛素硫酯中间体的组装。其他研究表明,Glu 550 可作为在低介电结合界面内生成Cys 820 硫醇盐的通用碱,而Arg 506 的作用是定向Glu 550 并稳定硫酯交换过程中的初始阴离子过渡态。

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