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Dimerization and opposite base-dependent catalytic impairment of polymorphic S326COGG1 glycosylase

机译:多态性S326COGG1糖基化酶的二聚化和相反的碱基依赖性催化损伤

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摘要

Human 8-oxoguanine-DNA glycosylase (OGG1) is the major enzyme for repairing 8-oxoguanine (8-oxoG), a mutagenic guanine base lesion produced by reactive oxygen species (ROS). A frequently occurring OGG1 polymorphism in human populations results in the substitution of serine 326 for cysteine (S326C). The 326 C/C genotype is linked to numerous cancers, although the mechanism of carcinogenesis associated with the variant is unclear. We performed detailed enzymatic studies of polymorphic OGG1 and found functional defects in the enzyme. S326C OGG1 excised 8-oxoG from duplex DNA and cleaved abasic sites at rates 2- to 6-fold lower than the wild-type enzyme, depending upon the base opposite the lesion. Binding experiments showed that the polymorphic OGG1 binds DNA damage with significantly less affinity than the wild-type enzyme. Remarkably, gel shift, chemical cross-linking and gel filtration experiments showed that S326C both exists in solution and binds damaged DNA as a dimer. S326C OGG1 enzyme expressed in human cells was also found to have reduced activity and a dimeric conformation. The glycosylase activity of S326C OGG1 was not significantly stimulated by the presence of AP-endonuclease. The altered substrate specificity, lack of stimulation by AP-endonuclease 1 (APE1) and anomalous DNA binding conformation of S326C OGG1 may contribute to its linkage to cancer incidence.
机译:人8-氧鸟嘌呤-DNA糖基化酶(OGG1)是修复8-氧鸟嘌呤(8-oxoG)的主要酶,这是一种由活性氧(ROS)产生的致突变性鸟嘌呤碱基病变。人类人群中经常发生的OGG1多态性导致丝氨酸326取代半胱氨酸(S326C)。 326 C / C基因型与多种癌症有关,尽管尚不清楚与该变体相关的致癌机理。我们对OGG1多态性进行了详细的酶学研究,发现了该酶的功能缺陷。 S326C OGG1从双链体DNA中切除了8-oxoG,并以比野生型酶低2至6倍的速率切割了无碱基位点,具体取决于与病灶相对的碱基。结合实验表明,多态性OGG1结合DNA损伤的亲和力明显低于野生型酶。值得注意的是,凝胶迁移,化学交联和凝胶过滤实验表明,S326C既存在于溶液中,又以二聚体结合受损的DNA。还发现在人细胞中表达的S326C OGG1酶具有降低的活性和二聚体构象。 AP核酸内切酶的存在并未明显刺激S326C OGG1的糖基化酶活性。底物特异性的改变,AP核酸内切酶1(APE1)缺乏刺激以及S326C OGG1的异常DNA结合构象可能有助于其与癌症发病率的联系。

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