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Designing active RNF4 monomers by introducing a tryptophan: avidity towards E2 similar to Ub conjugates dictates the activity of ubiquitin RING E3 ligases

机译:通过引入色氨酸来设计活性RNF4单体:类似于UB缀合物的耐嗜合效果决定了泛素环E3连接酶的活性

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摘要

Ubiquitin RING E3 ligases (E3s) catalyze ubiquitin (Ub) transfer to their substrates by engaging E2 similar to Ub intermediates with the help of their RING domains. Different E3s have been found to contain a conserved tryptophan residue in their RING that plays an essential role in E2 binding and, hence, enzymatic activity. Many active E3s, however, lack this specific residue. We mined through the existing data to observe that the conservation of the tryptophan and quaternary organization of the RING domains are remarkably correlated. Monomeric RINGs possess the tryptophan while all well-characterized dimeric RINGs, except RNF8, contain other amino acid residues. Biochemical analyses on representative E3s and their mutants reveal that the tryptophan is essential for optimal enzymatic activity of monomeric RINGs whereas dimeric E3s with tryptophan display hyperactivity. Most critically, the introduction of the tryptophan restores the activity of inactive monomeric RNF4 mutants, an obligatory dimeric E3. Binding studies indicate that monomeric RINGs retained the tryptophan for their optimal functionality to compensate for weak Ub binding. On the other hand, tryptophan was omitted from dimeric RINGs during the course of evolution to prevent unwanted modifications and allow regulation of their activity through oligomerization.
机译:泛素环E3连接酶(E3S)通过在其环结构域的帮助下使用与UB中间体相似的E2来催化泛素(UB)转移到它们的基材上。已发现不同的E3S在其环中含有保守的色氨酸残留物,其在E2结合和因此,酶活性中起着重要作用。然而,许多活跃的E3s缺乏这种特定的残留物。我们通过现有数据开采,观察到色氨酸和环形域的季度组织的保护非常相关。单体环具有色氨酸,而除了RNF8之外的所有特征的二聚体环含有其他氨基酸残基。代表性E3s及其突变体的生化分析表明,色氨酸对于单体环的最佳酶活性是必不可少的,而用色氨酸显示多动。最重要的是,色氨酸的引入恢复活性单体RNF4突变体的活性,义务二聚体E3。结合研究表明,单体环保留了色氨酸的最佳功能,以补偿弱UB结合。另一方面,在进化过程中,从二聚体环中省略了色氨酸,以防止不需要的修饰并通过寡聚化调节它们的活性。

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