首页> 美国卫生研究院文献>The Journal of Biological Chemistry >E2-mediated Small Ubiquitin-like Modifier (SUMO) Modification of Thymine DNA Glycosylase Is Efficient but Not Selective for the Enzyme-Product Complex
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E2-mediated Small Ubiquitin-like Modifier (SUMO) Modification of Thymine DNA Glycosylase Is Efficient but Not Selective for the Enzyme-Product Complex

机译:E2介导的胸腺嘧啶脱氧核糖核酸糖基化酶的小泛素样修饰剂(SUMO)修饰是有效的但对酶-产物复合物不是选择性的

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摘要

Thymine DNA glycosylase (TDG) initiates the repair of G·T mismatches that arise by deamination of 5-methylcytosine (mC), and it excises 5-formylcytosine and 5-carboxylcytosine, oxidized forms of mC. TDG functions in active DNA demethylation and is essential for embryonic development. TDG forms a tight enzyme-product complex with abasic DNA, which severely impedes enzymatic turnover. Modification of TDG by small ubiquitin-like modifier (SUMO) proteins weakens its binding to abasic DNA. It was proposed that sumoylation of product-bound TDG regulates product release, with SUMO conjugation and deconjugation needed for each catalytic cycle, but this model remains unsubstantiated. We examined the efficiency and specificity of TDG sumoylation using in vitro assays with purified E1 and E2 enzymes, finding that TDG is modified efficiently by SUMO-1 and SUMO-2. Remarkably, we observed similar modification rates for free TDG and TDG bound to abasic or undamaged DNA. To examine the conjugation step directly, we determined modification rates (kobs) using preformed E2∼SUMO-1 thioester. The hyperbolic dependence of kobs on TDG concentration gives kmax = 1.6 min−1 and K1/2 = 0.55 μm, suggesting that E2∼SUMO-1 has higher affinity for TDG than for the SUMO targets RanGAP1 and p53 (peptide). Whereas sumoylation substantially weakens TDG binding to DNA, TDG∼SUMO-1 still binds relatively tightly to AP-DNA (Kd ∼50 nm). Although E2∼SUMO-1 exhibits no specificity for product-bound TDG, the relatively high conjugation efficiency raises the possibility that E2-mediated sumoylation could stimulate product release in vivo. This and other implications for the biological role and mechanism of TDG sumoylation are discussed.
机译:胸腺嘧啶脱氧核糖核酸糖基化酶(TDG)引发了由5-甲基胞嘧啶(mC)脱氨基而引起的G·T错配的修复,并切除了氧化形式的5-甲酰基胞嘧啶和5-羧基胞嘧啶。 TDG在活跃的DNA去甲基化中起作用,对于胚胎发育至关重要。 TDG与无碱基的DNA形成紧密的酶-产物复合物,严重阻碍了酶的转换。 TDG被小的泛素样修饰剂(SUMO)蛋白质修饰会减弱其与无碱基DNA的结合。有人提出,与产品结合的TDG的磺基化作用可调节产品的释放,每个催化循环都需要SUMO结合和去结合,但该模型仍未得到证实。我们使用纯化的E1和E2酶的体外测定法检查了TDG磺酰化的效率和特异性,发现TDG被SUMO-1和SUMO-2有效修饰。值得注意的是,我们观察到游离TDG和与无碱基或未受损DNA结合的TDG的修饰率相似。为了直接检查结合步骤,我们使用预先形成的E2〜SUMO-1硫代酯测定了修饰率(kobs)。 Kobs对TDG浓度的双曲线依赖性为kmax = 1.6 min -1 和K1 / 2 = 0.55μm,表明E2〜SUMO-1对TDG的亲和力高于对SUMO靶标RanGAP1和p53的亲和力(肽)。磺基化作用显着削弱了TDG与DNA的结合,而TDG〜SUMO-1仍然与AP-DNA相对紧密地结合(Kd〜50 nm)。尽管E2〜SUMO-1对结合产物的TDG没有特异性,但较高的结合效率增加了E2介导的磺酰化可刺激体内产物释放的可能性。讨论了TDG磺酰化的生物学作用和机制的这一含义和其他含义。

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