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首页> 外文期刊>Nucleic Acids Research >Adenine excisional repair function of MYH protein on the adenine:8-hydroxyguanine base pair in double-stranded DNA.
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Adenine excisional repair function of MYH protein on the adenine:8-hydroxyguanine base pair in double-stranded DNA.

机译:MYH蛋白对双链DNA中腺嘌呤:8-羟基鸟嘌呤碱基对的腺嘌呤切除修复功能。

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摘要

Adenine paired with 8-hydroxyguanine (oh(8)G), a major component of oxidative DNA damage, is excised by MYH base excision repair protein in human cells. Since repair activity of MYH protein on an A:G mismatch has also been reported, we compared the repair activity of His(6)-tagged MYH proteins, expressed in Spodoptera frugiperda Sf21 cells, on A:oh(8)G and A:G mismatches by DNA cleavage assay and gel mobility shift assay. We also compared the repair ability of type 1 mitochondrial protein with type 2 nuclear protein, as well as of polymorphic type 1-Q(324) and 2-Q(310) proteins with type 1-H(324) and 2-H(310) proteins by DNA cleavage assay and complementation assay of an Escherichia coli mutM mutY strain. In a reaction buffer with a low salt (0-50 mM) concentration, adenine DNA glycosylase activity of type 2 protein was detected on both A:oh(8)G and A:G substrates. However, in a reaction buffer with a 150 mM salt concentration, similar to physiological conditions, the glycosylase activity on A:G, but not on A:oh(8)G, was extremely reduced and the binding activity of type 2 protein for A:G, but not for A:oh(8)G, was proportionally reduced. The glycosylase activity on A:oh(8)G and the ability to suppress spontaneous mutagenesis were greater for type 2 than type 1 enzyme. There was apparently no difference in the repair activities between the two types of polymorphic MYH proteins. These results indicate that human MYH protein specifically catalyzes the glycosylase reaction on A:oh(8)G under physiological salt concentrations.
机译:腺嘌呤与8-羟基鸟嘌呤(oh(8)G)配对,这是氧化性DNA损伤的主要成分,是由人细胞中的MYH碱基切除修复蛋白切除的。由于还报道了MYH蛋白对A:G错配的修复活性,因此我们比较了在Spodoptera frugiperda Sf21细胞中表达的His(6)标记的MYH蛋白对A:oh(8)G和A的修复活性:通过DNA切割测定和凝胶迁移率变动测定,G失配。我们还比较了1型线粒体蛋白与2型核蛋白的修复能力以及多态性1-Q(324)和2-Q(310)蛋白与1-H(324)和2-H( 310)通过大肠杆菌mutM mutY菌株的DNA裂解测定和互补测定测定蛋白质。在低盐浓度(0-50 mM)的反应缓冲液中,在A:oh(8)G和A:G底物上均检测到2型蛋白的腺嘌呤DNA糖基化酶活性。但是,在类似于生理条件的盐浓度为150 mM的反应缓冲液中,对A:G而不对A:oh(8)G的糖基化酶活性大大降低,并且2型蛋白与A的结合活性:G,而不是A:oh(8)G,按比例减少。 2型比1型酶对A:oh(8)G的糖基化酶活性和抑制自发诱变的能力更大。两种多态性MYH蛋白之间的修复活性显然没有差异。这些结果表明,人类MYH蛋白在生理盐浓度下特异性催化A:oh(8)G上的糖基化酶反应。

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