Free Radical Biology and Aging Program, Oklahoma Medical Research Foundation , Oklahoma City, Oklahoma 73104, United States.
Biochemistry. 2014 Jun 24;53(24):4004-14. doi: 10.1021/bi500072v. Epub 2014 Jun 13.
Proteins can be modified on lysines (K) with a single ubiquitin (Ub) or with polymers of Ub (polyUb). These different configurations and their respective topologies are primary factors for determining whether substrates are targeted to the proteasome for degradation or directed to nonproteolytic outcomes. We report here on the intrinsic ubiquitylation properties of UbcM2 (UBE2E3/UbcH9), a conserved Ub-conjugating enzyme linked to cell proliferation, development, and the cellular antioxidant defense system. Using a fully recombinant ubiquitylation assay, we show that UbcM2 is severely limited in its ability to synthesize polyUb chains with wild-type Ub. Restriction to monoubiquitylation is governed by multiple residues on the backside of the enzyme, far removed from its active site, and by lysine 48 of Ub. UbcM2 with mutated backside residues can synthesize K63-linked polyUb chains and to a lesser extent K6- and K48-linked chains. Additionally, we identified a single residue on the backside of the enzyme that promotes monoubiquitylation. Together, these findings reveal that a combination of noncatalytic residues within the Ubc catalytic core domain of UbcM2 as well as a lysine(s) within Ub can relegate a Ub-conjugating enzyme to monoubiquitylate its cognate targets despite having the latent capacity to construct polyUb chains. The two-fold mechanism for restricting activity to monoubiquitylation provides added insurance that UbcM2 will not build polyUb chains on its substrates, even under conditions of high local Ub concentrations.
蛋白质可以在赖氨酸(K)上被单个泛素(Ub)或泛素聚合物(polyUb)修饰。这些不同的结构及其各自的拓扑结构是决定底物是否被靶向到蛋白酶体进行降解或被导向非蛋白水解结果的主要因素。我们在这里报告了 UbcM2(UBE2E3/UbcH9)的固有泛素化特性,UbcM2 是一种与细胞增殖、发育和细胞抗氧化防御系统相关的保守泛素连接酶。使用完全重组的泛素化测定法,我们表明 UbcM2 合成野生型 Ub 的 polyUb 链的能力受到严重限制。对单泛素化的限制受酶背面的多个残基控制,这些残基远离其活性位点,并且受 Ub 的赖氨酸 48 控制。具有突变背面残基的 UbcM2 可以合成 K63 连接的 polyUb 链,并且在较小程度上可以合成 K6 和 K48 连接的链。此外,我们在酶的背面鉴定了一个促进单泛素化的单一残基。总之,这些发现表明,UbcM2 的 Ubc 催化核心结构域内的非催化残基以及 Ub 内的一个赖氨酸(s)可以将泛素连接酶降级为对其同源靶标进行单泛素化,尽管其具有构建 polyUb 链的潜在能力。将活性限制为单泛素化的双重机制提供了额外的保证,即使在 Ub 局部浓度高的情况下,UbcM2 也不会在其底物上构建 polyUb 链。