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Human Cdc34 Employs Distinct Sites To Coordinate Attachment of Ubiquitin to a Substrate and Assembly of Polyubiquitin Chains

机译:人类Cdc34使用不同的站点来协调泛素与基质和多聚泛素链组装的连接。

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The Cdc34 E2 ubiquitin (Ub) conjugating enzyme catalyzes polyubiquitination of a substrate recruited by the Skp1-Cullin 1-F-box protein-ROC1 E3 Ub ligase. Using mutagenesis studies, we now show that human Cdc34 employs distinct sites to coordinate the transfer of Ub to a substrate and the assembly of polyubiquitin chains. Mutational disruption of the conserved charged stretch (residues 143 to 153) or the acidic loop residues D102 and D103 led to accumulation of monoubiquitinated IκBα while failing to yield polyubiquitin chains, due to a catalytic defect in Ub-Ub ligation. These results suggest an ability of human Cdc34 to position the attacking Ub for assembly of polyubiquitin chains. Analysis of Cdc34N85Q and Cdc34S138A revealed severe defects of these mutants in both poly- and monoubiquitination of IκBα, supporting a role for N85 in stabilizing the oxyanion and in coordinating, along with S138, the attacking lysine for catalysis. Finally, Cdc34S95D and Cdc34E108A/E112A abolished both poly- and monoubiquitination of IκBα. Unexpectedly, the catalytic defects of these mutants in di-Ub synthesis can be rescued by fusion of a glutathione S-transferase moiety at E2's N terminus. These findings support the hypothesis that human Cdc34 S95 and E108/E112 are required to position the donor Ub optimally for catalysis, in a manner that might depend on E2 dimerization.
机译:Cdc34 E2泛素(Ub)缀合酶催化Skp1-Cullin 1-F-box蛋白-ROC1 E3 Ub连接酶募集的底物的多泛素化。使用诱变研究,我们现在显示人Cdc34利用不同的位点来协调Ub向底物的转移和多聚泛素链的组装。由于Ub-Ub连接的催化缺陷,保守的带电链段(残基143至153)或酸性环残基D102和D103的突变破坏导致单泛素化的IκBα积累,而无法产生多泛素链。这些结果表明人Cdc34能够定位攻击性Ub以装配聚泛素链。对Cdc34 N85Q 和Cdc34 S138A 的分析显示,这些突变体在IκBα的多泛素化和单泛素化中均存在严重缺陷,支持了N85在稳定氧阴离子和协调配体方面的作用。用S138,攻击性赖氨酸催化。最后,Cdc34 S95D 和Cdc34 E108A / E112A 消除了IκBα的多泛素化和单泛素化。出乎意料的是,这些突变体在Di-Ub合成中的催化缺陷可以通过在E2的N端融合谷胱甘肽 S -转移酶部分来挽救。这些发现支持这样的假设,即人类Cdc34 S95和E108 / E112需要以可能依赖于E2二聚作用的方式最佳地定位供体Ub进行催化。

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