Department of Biochemistry, Bose Institute, P-1/12 CIT Scheme VIIM, Kolkata 700054, India.
Department of Biochemistry, Bose Institute, P-1/12 CIT Scheme VIIM, Kolkata 700054, India
Biochem J. 2018 May 9;475(9):1569-1582. doi: 10.1042/BCJ20170909.
RING (eally nteresting ew ene) domains in ubiquitin RING E3 ligases exclusively engage ubiquitin (Ub)-loaded E2s to facilitate ubiquitination of their substrates. Despite such specificity, all RINGs characterized till date bind unloaded E2s with dissociation constants (s) in the micromolar to the sub-millimolar range. Here, we show that the RING domain of E3 ligase ZNRF1, an essential E3 ligase implicated in diverse cellular pathways, binds Ube2N with a of ∼50 nM. This high-affinity interaction is exclusive for Ube2N as ZNRF1 interacts with Ube2D2 with a of ∼1 µM, alike few other E3s. The crystal structure of ZNRF1 C-terminal domain in complex with Ube2N coupled with mutational analyses reveals the molecular basis of this unusual affinity. We further demonstrate that the ubiquitination efficiency of ZNRF1 : E2 pairs correlates with their affinity. Intriguingly, as a consequence of its high E2 affinity, an excess of ZNRF1 inhibits Ube2N-mediated ubiquitination at concentrations ≥500 nM instead of showing enhanced ubiquitination. This suggests a novel mode of activity regulation of E3 ligases and emphasizes the importance of E3-E2 balance for the optimum activity. Based on our results, we propose that overexpression-based functional analyses on E3 ligases such as ZNRF1 must be approached with caution as enhanced cellular levels might result in aberrant modification activity.
RING(Really Interesting New Gene)结构域存在于泛素连接酶 E3 中,仅与加载泛素(Ub)的 E2 结合,以促进其底物的泛素化。尽管具有这种特异性,但迄今为止表征的所有 RING 都以微摩尔到亚毫摩尔范围的离解常数(s)与未加载的 E2 结合。在这里,我们表明 E3 连接酶 ZNRF1 的 RING 结构域与泛素连接酶 Ube2N 以 ∼50 nM 的亲和力结合。这种高亲和力的相互作用是 Ube2N 特有的,因为 ZNRF1 与 Ube2D2 的亲和力为 ∼1 μM,与少数其他 E3 类似。ZNRF1 C 末端结构域与 Ube2N 复合物的晶体结构与突变分析相结合,揭示了这种不寻常亲和力的分子基础。我们进一步证明,ZNRF1-E2 对的泛素化效率与其亲和力相关。有趣的是,由于其与 E2 的高亲和力,过量的 ZNRF1 在浓度≥500 nM 时会抑制 Ube2N 介导的泛素化,而不是显示增强的泛素化。这表明 E3 连接酶的活性调节存在一种新的模式,并强调了 E3-E2 平衡对于最佳活性的重要性。基于我们的结果,我们建议对 ZNRF1 等 E3 连接酶的基于过表达的功能分析必须谨慎进行,因为细胞水平的增强可能导致异常的修饰活性。