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首页> 外文期刊>Nature Communications >A tri-ionic anchor mechanism drives Ube2N-specific recruitment and K63-chain ubiquitination in TRIM ligases
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A tri-ionic anchor mechanism drives Ube2N-specific recruitment and K63-chain ubiquitination in TRIM ligases

机译:三离子锚机机制在修剪连接中驱动UBE2N特异性募集和K63链泛素化

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The cytosolic antibody receptor TRIM21 possesses unique ubiquitination activity that drives broad-spectrum anti-pathogen targeting and underpins the protein depletion technology Trim-Away. This activity is dependent on formation of self-anchored, K63-linked ubiquitin chains by the heterodimeric E2 enzyme Ube2N/Ube2V2. Here we reveal how TRIM21 facilitates ubiquitin transfer and differentiates this E2 from other closely related enzymes. A tri-ionic motif provides optimally distributed anchor points that allow TRIM21 to wrap an Ube2N~Ub complex around its RING domain, locking the closed conformation and promoting ubiquitin discharge. Mutation of these anchor points inhibits ubiquitination with Ube2N/Ube2V2, viral neutralization and immune signalling. We show that the same mechanism is employed by the anti-HIV restriction factor TRIM5 and identify spatially conserved ionic anchor points in other Ube2N-recruiting RING E3s. The tri-ionic motif is exclusively required for Ube2N but not Ube2D1 activity and provides a generic E2-specific catalysis mechanism for RING E3s.
机译:细胞溶质抗体受体饰边21具有独特的泛素化活性,驱动广谱抗病原体靶向并支撑蛋白质耗尽技术的修剪。该活性依赖于异锚式K63连接的泛素链的形成,通过异二聚酯E2酶UBE2N / UBE2V2。在这里,我们揭示了Trim21如何促进泛素转移并将该E2与其他密切相关的酶区分开来。三离子图案提供最佳分布的锚点,允许Trim21在其环形域中缠绕UBE2N〜UB复合物,锁定闭合构象并促进泛素放电。这些锚点的突变抑制ube2n / Ube2v2,病毒中和和免疫信号传导。我们表明,抗HIV限制因子TRIM5采用相同的机制,并鉴定其他UBE2N募集环E3中的空间保守的离子锚点。 Tri-离子基序专门针对UBE2N但不是UBE2D1活性而需要,并为环E3S提供通用E2特异性催化机制。

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