首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Characterizing Requirements for Small Ubiquitin-like Modifier (SUMO) Modification and Binding on Base Excision Repair Activity of Thymine-DNA Glycosylase in Vivo
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Characterizing Requirements for Small Ubiquitin-like Modifier (SUMO) Modification and Binding on Base Excision Repair Activity of Thymine-DNA Glycosylase in Vivo

机译:小泛素样修饰剂(SUMO)修饰和对胸腺嘧啶DNA糖基化酶体内碱基切除修复活性的结合的表征要求。

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摘要

Thymine-DNA glycosylase (TDG) plays critical roles in DNA base excision repair and DNA demethylation. It has been proposed, based on structural studies and in vitro biochemistry, that sumoylation is required for efficient TDG enzymatic turnover following base excision. However, whether sumoylation is required for TDG activity in vivo has not previously been tested. We have developed an in vivo assay for TDG activity that takes advantage of its recently discovered role in DNA demethylation and selective recognition and repair of 5-carboxylcytosine. Using this assay, we investigated the role of sumoylation in regulating TDG activity through the use of TDG mutants defective for sumoylation and Small Ubiquitin-like Modifier (SUMO) binding and by altering TDG sumoylation through SUMO and SUMO protease overexpression experiments. Our findings indicate that sumoylation and SUMO binding are not essential for TDG-mediated excision and repair of 5-carboxylcytosine bases. Moreover, in vitro assays revealed that apurinic/apyrimidinic nuclease 1 provides nearly maximum stimulation of TDG processing of G·caC substrates. Thus, under our assay conditions, apurinic/apyrimidinic nuclease 1-mediated stimulation or other mechanisms sufficiently alleviate TDG product inhibition and promote its enzymatic turnover in vivo.
机译:胸腺嘧啶DNA糖基化酶(TDG)在DNA碱基切除修复和DNA去甲基化中起着关键作用。基于结构研究和体外生物化学已经提出,碱基切除后有效的TDG酶转化需要SUMO化。但是,先前尚没有测试过体内的TDG活性是否需要磺酰化。我们已经开发了一种TDG活性的体内检测方法,该方法利用了它最近在DNA脱甲基以及选择性识别和修复5-羧基胞嘧啶中的作用。使用这种测定方法,我们通过使用缺陷性的TDG突变体来修饰SUDG和类似SUMP的SUDG,以及通过SUMO和SUMO蛋白酶的过表达实验改变TDG SUMO化,来研究SUMO化在调节TDG活性中的作用。我们的研究结果表明,sumoylation和SUMO绑定不是TDG介导的切除和修复5-羧基胞嘧啶碱基所必需的。此外,体外测定显示,嘌呤/嘧啶核酸酶1提供了最大的G·caC底物TDG加工刺激。因此,在我们的测定条件下,嘌呤/嘧啶核酸酶1介导的刺激或其他机制充分减轻了TDG产物的抑制并促进了其体内酶促转化。

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